Single Molecule Investigations of Transcriptional Products and Processes

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ISBN 13 :
Total Pages : 306 pages
Book Rating : 4.:/5 (89 download)

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Book Synopsis Single Molecule Investigations of Transcriptional Products and Processes by : Hua Yu

Download or read book Single Molecule Investigations of Transcriptional Products and Processes written by Hua Yu and published by . This book was released on 2007 with total page 306 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Investigation of Bacterial Transcription Using Single Molecule Techniques

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ISBN 13 :
Total Pages : 124 pages
Book Rating : 4.:/5 (15 download)

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Book Synopsis Investigation of Bacterial Transcription Using Single Molecule Techniques by : SangYoon Chung

Download or read book Investigation of Bacterial Transcription Using Single Molecule Techniques written by SangYoon Chung and published by . This book was released on 2016 with total page 124 pages. Available in PDF, EPUB and Kindle. Book excerpt: The numerous complex molecular processes occurring inside living cells are primarily carried out by proteins and other biopolymers, such as ribonucleic acids (RNA). The identity and quantity of the different proteins and RNA determine the cell's phenotype and changes in response to the environment. Therefore, the internal composition of the cell in terms of the type and concentration of proteins and RNA is tightly regulated. Gene expression is the process of using the DNA sequence information to produce these biopolymers. Transcription, the initial step in gene expression, where one strand of DNA is used as template by the enzyme RNA polymerase (RNAP) for synthesizing a complementary RNA or transcript. Since cell phenotype is mostly determined by transcription, a complex regulatory mechanism exists involving a large number of factors to control the level of transcription of a gene. Although most studies are focused on multiple cycles of either transcription or association of DNA and RNA Polymerase (RNAP) to make RNAP-Promoter open complex (RPO), single round transcription studies are crucial in elucidating the mechanism of sophisticated RNAP-DNA interactions and its kinetics in transcription. In this context, we have developed a novel in vitro quenching based single round transcription assay using single molecule detection. Using this, we could successfully dissect initiation kinetics starting from different initial transcribing stages and found that transcription initiation doesn't follow a sequential model (as commonly believed). Instead, we identified a previously uncharacterized state that is unique to initial transcribing complexes and associated with the backtracked RNAP-DNA complex. Also, we have investigated the size/concentration effects of various osmolytes and macromolecular crowding agents, which mimic the crowded cellular environment, on actively-transcribing RNAP and found enhancement in transcription kinetics by larger crowding agents at the same viscosity.

Single Molecule and Synthetic Biology Studies of Transcription

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ISBN 13 :
Total Pages : 326 pages
Book Rating : 4.:/5 (858 download)

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Book Synopsis Single Molecule and Synthetic Biology Studies of Transcription by : Bradley Michael Zamft

Download or read book Single Molecule and Synthetic Biology Studies of Transcription written by Bradley Michael Zamft and published by . This book was released on 2011 with total page 326 pages. Available in PDF, EPUB and Kindle. Book excerpt: The horizons of biology are ever expanding, from the discernment of the detailed mechanisms of enzyme function, to the manipulation of the physiological processes of whole organisms and ecosystems. Single molecule studies allow for the characterization of the individual processes that comprise an enzyme's mechanochemical cycle. Through standardization and generalization of biological techniques, components, and knowledge, synthetic biology seeks to expand the scale of biological experiments and to usher in an age of biology as a true engineering science, in which those studying different hierarchical levels of sophistication need not start from the fundamental biochemical principles underlying all biological experiments. Here we report our findings on the processes governing transcription and its role in gene expression through the use of both single molecule and synthetic biology methods. We have established a promoter-free, factor-free method of initiation of transcription by the mitochondrial RNA polymerase in Saccharomyces cerevisiae, Rpo41 through the use of synthetic oligonucleotides to imitate the hybridization geometry of Rpo41 during active transcription. Using this system, we have established that a sub-micromolar NTP concentration is appropriate for non-saturating transcriptional runoff assays. We have optimized the transcription buffer and found that 10 mM MgCl2, 40 mM KCl, and 10 mM DTT are sufficient for robust transcription. Stability studies show that Rpo41 loses approximately 30% of its activity during each freeze-thaw cycle, and that the pre-formed elongation complex loses transcriptional activity with a half-life of 7.4±1.5 hr. Through the use of optical trapping techniques, we have established a method to monitor the transcription of individual Rpo41 molecules in real time. This has allowed us to measure the kinetic rates of nucleotide incorporation by the enzyme: Km = 22±13 μM-1 and vmax = 25±2.5 bp/s. Both of these rates are more similar to those of the main nuclear RNA polymerase in the same organism, RNA Polymerase II (Pol II) than to that of the T7 RNA polymerase, despite the fact that Rpo41 is a single-subunit RNA polymerase with homology to those of the T-odd bacteriophage and no discernable homology to Pol II. Furthermore, like Pol II and the E. coli RNA polymerase, transcription by Rpo41 consists of periods of processive transcription interspersed with periods of pausing. We have also observed retrograde motion of Rpo41 during pauses, termed backtracking, a process that has not been reported in phage-like RNA polymerases. We have performed single molecule assays of transcription by both Pol II and Rpo41 on templates of differing base pair composition and found that, in general, the characteristics of pausing are attenuated in templates of higher GC content. Specifically, the frequency of pausing is decreased in GC-rich templates, as is the average pause duration. The distribution of pause durations is correspondingly shifted to shorter pauses on GC-rich templates. We discuss two mechanisms by which template composition may affect pausing: (1) movement of the backtracked transcription bubble is affected by differences in the base stacking energies from the disrupted/created DNA/DNA and RNA/DNA base pairs at the ends of the bubble, and (2) secondary structure of the nascent RNA upstream of the backtracked transcription bubble imposes an energetic barrier to its backward movement. We give in silico evidence that it is the latter mechanism. Incorporation of this secondary structure energy barrier (an "energy penalty") into a model of transcriptional pausing by backtracking allows for statistical fits of the mean pause densities, mean pause durations, and the distribution of pause durations for each enzyme on each template. Furthermore, incorporation of the energy penalty allows for fitting of the pause characteristics for a given enzyme using a single, enzyme specific hopping rate, k0, that is independent of template, and a single, template dependent energy penalty term, [Delta]GRNA, which is enzyme independent. For Rpo41, we find that k0, the hopping rate of the backtracked enzyme along DNA without RNA secondary structure, is 5.4±1.8 s-1, while it is 2.9±0.3 s-1 for Pol II. Furthermore, the average energy penalty due to the nascent RNA, [Delta]GRNA, on the AT-rich template used in this study is 0.7±0.1 kT, while it is 0.8±0.1 kT for random DNA and 1.0±0.1 kT for GC-rich DNA. In order to confirm that it is the secondary structure of the RNA that is the cause of the energy penalty, we performed the same single-molecule transcription assays in the presence of RNase A, an enzyme that digests unprotected RNA in both single-stranded and double-stranded form. The pausing characteristics of all traces on all templates in the presence of RNase A are statistically indistinguishable from those on AT-rich DNA without RNase, indicating that the RNase digested enough of the nascent RNA to disrupt any secondary structure. Protection of the 5' region of the nascent RNA by steric interactions between the polymerase and the RNase prevented full degradation of the RNA, and thus allowed for some backtracking. This strongly supports the new model, presented here, of modulation of transcriptional pausing by secondary structure of the nascent RNA. In contrast to the detailed and isolated nature of single-molecule transcription, we also performed a synthetic biology project involving Rpo41. The intent of this project was to investigate the plausibility of the creation of a transcriptionally independent mitochondrion, and by extension a minimal cell, by movement of the mitochondrial transcriptional machinery from the nuclear to the mitochondrial genome. Thus we performed in vivo mitochondrial transformation of yeast cells with a synthetic construct containing the gene encoding for Rpo41. We report that we have successfully integrated said synthetic gene into the mitochondrial genome, and have seen its expression to the transcriptional level. Furthermore, we are fairly confident that the full, intact mRNA of the synthetic gene is being created within the mitochondrial matrix. We have not been able to detect expression of the protein product of the integrated synthetic construct, nor have we been able to isolate a strain that exhibits its expression in the absence of the wild-type, nuclear copy. Because the length of Rpo41 is longer than any other protein synthesized within the mitochondrial organelle, we have begun experiments to determine the maximal polypeptide length able to be translated by the mitochondrial ribosome and associated cofactors.

Single-molecule Studies of Different Steps in Human RNA Polymerase II and Bacterial RNA Polymerase Transcription

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ISBN 13 :
Total Pages : 146 pages
Book Rating : 4.:/5 (19 download)

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Book Synopsis Single-molecule Studies of Different Steps in Human RNA Polymerase II and Bacterial RNA Polymerase Transcription by : Yazan Khalaf Alhadid

Download or read book Single-molecule Studies of Different Steps in Human RNA Polymerase II and Bacterial RNA Polymerase Transcription written by Yazan Khalaf Alhadid and published by . This book was released on 2018 with total page 146 pages. Available in PDF, EPUB and Kindle. Book excerpt: Transcription of genomic DNA of all organisms is carried out by members of the multi-subunit RNA polymerase family. Regulation of RNA polymerase localization and activity underlies cellular homeostasis, division, and response to environmental cues. The catalytic mechanism, overall architecture, and many sequence and structural features of bacterial RNA polymerase are conserved in its Archaeal and Eukaryotic counterparts. The human RNA polymerase II (Pol II) is responsible for transcription of all protein-coding and many non-coding genes. The majority of current knowledge on RNA polymerases and their mechanism at different steps in transcription derives from extensive work done using classical biochemical, genetic and structural biology methods. However, the use of single-molecule approaches addressed crucial questions on the function and mechanism of RNA polymerases during transcription, which were not possible to answer with ensemble-based approaches due to averaging effects. A useful fluorescence-based single-molecule technique to measure distances on the molecular scale and monitor dynamics is F rster resonance energy transfer (FRET). Here, I report on the development of diffusion-based single-molecule FRET (smFRET) methods to investigate different steps in transcription by the in vitro reconstituted human Pol II system. Using an assay that monitors the FRET changes between fluorescent dyes in the unwound region of promoter DNA (transcription bubble), I demonstrated the effect of certain components of the reconstituted system on the relative size of the transcription bubble. I also detail the optimizations done to enhance the affinity of single-stranded DNA (ssDNA) FRET probes to complementary target sequences. These ssDNA FRET probes were used to investigate the effect of certain components of the reconstituted system on Pol II activity by measuring the relative levels of RNA product. In addition to studies on the Pol II system, I report on the effect of the 5'-group of nascent RNA on the stability of the Escherichia coli RNA polymerase (RNAP) transcription bubble. I show how the presence of a 5'-monophosphate appears to destabilize the open bubble while a 5'-hydroxyl has no effect. Finally, I describe the work done on a project I took part in that identified a previously uncharacterized RNAP paused complex in initiation. We demonstrate that RNAP complexes undergoing initial transcription can enter the inactive paused state by backtracking. I also demonstrate how the presence of a 5'-triphosphate rapidly enhances entrance of RNAP complexes undergoing initial transcription into an inactive paused complex.

Single-molecule Studies on Transcriptional Elongation in Prokaryotes and Eukaryotes

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (795 download)

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Book Synopsis Single-molecule Studies on Transcriptional Elongation in Prokaryotes and Eukaryotes by : Jing Zhou

Download or read book Single-molecule Studies on Transcriptional Elongation in Prokaryotes and Eukaryotes written by Jing Zhou and published by . This book was released on 2012 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Transcription, the process of copying genetic information stored in DNA into RNA, is fundamental to life. It is carried out by an extraordinary nano-machine called RNA polymerase (RNAP). Transcriptional elongation, during which RNAP moves along the DNA, adding one nucleotide at a time to the RNA transcript, is highly dynamic and regulated. The motion of RNAP is discontinuous and interrupted by pauses that play an essential role in gene regulation. Fundamental questions regarding the mechanisms of elongation and its modulation by transcription factors, however, remain unclear. In this dissertation, I focus on using high-resolution, optical trapping techniques to study the mechanisms of transcriptional elongation by both prokaryotic and eukaryotic RNA polymerases at the single-molecule level. First, I describe the studies on how the motion of single E.coli RNAP molecules is modulated by two universally conserved, essential transcription factors (NusA and NusG). From individual transcriptional elongation records, the rates of entering pause states, the pause state lifetimes, and the pause-free elongation speeds can all be extracted. By studying the effects of NusA (and NusG) on these kinetic rates as a function of the applied load, we were able to develop a quantitative kinetic scheme for elongation and pausing. This model not only explains the functions of NusA/NusG, but also provides insight into the mechanism of transcriptional pausing, which had previously been controversial. Second, a novel optical-trapping assay capable of directly probing elongation by individual eukaryotic RNA polymerase II (RNAPII) molecules will be described. We find that the RNAPII trigger loop, an evolutionarily conserved protein subdomain, not only affects each of the three main phases of elongation, namely: substrate binding, translocation, and catalysis; but also plays a critical role in controlling the fidelity of transcription. Our data also support a Brownian ratchet model for elongation which incorporates a secondary nucleotide binding site.

Molecular Biology of The Cell

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ISBN 13 : 9780815332183
Total Pages : 0 pages
Book Rating : 4.3/5 (321 download)

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Book Synopsis Molecular Biology of The Cell by : Bruce Alberts

Download or read book Molecular Biology of The Cell written by Bruce Alberts and published by . This book was released on 2002 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Single-Molecule Studies of Gene Expression

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ISBN 13 :
Total Pages : 252 pages
Book Rating : 4.:/5 (769 download)

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Book Synopsis Single-Molecule Studies of Gene Expression by : Hamilton Courtney Hodges

Download or read book Single-Molecule Studies of Gene Expression written by Hamilton Courtney Hodges and published by . This book was released on 2009 with total page 252 pages. Available in PDF, EPUB and Kindle. Book excerpt: During the twentieth century, researchers made significant advances in understanding the biochemical basis for gene expression. In the twenty-first century, the development of single-molecule manipulation techniques allowed researchers for the first time to directly observe the activities of gene expression in real time. In particular, experiments involving single-molecule visualization and manipulation have revealed the processes of gene expression to be stochastic events governed by the physics of the nanoscale. Our investigation of eukaryotic transcription using single-molecule optical trapping techniques has shown that RNA polymerase II is a type of molecular motor that periodically disengages its DNA substrate and freely diffuses along it, resulting in transient pausing events. The behavior of the polymerase during these pauses has turned out to be critical for understanding how the polymerase transcribes through nucleosomes. In this dissertation, I report that the nucleosome behaves as a fluctuating barrier that locally but dramatically affects the transcription dynamics of the polymerase. The polymerase, rather than actively separating DNA from histones, functions instead as a ratchet that rectifies nucleosomal fluctuations. We also obtained direct evidence that transcription through a nucleosome involves transfer of the core histones behind the transcribing polymerase via a transient DNA loop. This work has significantly addressed how the interplay between polymerase dynamics and nucleosome fluctuations affects the dynamics of gene expression. Using optical trapping techniques, we also directly observed the process of translation by the E. coli ribosome for the first time. We observed that translation occurs through successive translocation-and-pause cycles. The distribution of pause lengths indicated that at least two rate-determining processes control each pause. Additionally, we have confirmed that each translocation step measures three bases--one codon--and observed that each step occurs in less than 0.1 s. We also observed that translocation and RNA unwinding are strictly coupled ribosomal functions. The emerging picture is that gene expression arises from the coordinated activities of specific macromolecular motors on their nucleic acid substrates. Our observations of individual transcription and translation events support a detailed physical understanding of gene expression and its regulation.

Single Molecule Studies to Decipher the Regulatory Effect of Transcription Factors on Gene Transcription

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (127 download)

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Book Synopsis Single Molecule Studies to Decipher the Regulatory Effect of Transcription Factors on Gene Transcription by : Achim P. Popp

Download or read book Single Molecule Studies to Decipher the Regulatory Effect of Transcription Factors on Gene Transcription written by Achim P. Popp and published by . This book was released on 2021 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

High Throughput Single Molecule Investigation of Transcription

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ISBN 13 :
Total Pages : 112 pages
Book Rating : 4.:/5 (819 download)

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Book Synopsis High Throughput Single Molecule Investigation of Transcription by : Soohong Kim

Download or read book High Throughput Single Molecule Investigation of Transcription written by Soohong Kim and published by . This book was released on 2012 with total page 112 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Single Molecule Studies of Sequence-dependent Transcription Pausing

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ISBN 13 :
Total Pages : 122 pages
Book Rating : 4.:/5 (588 download)

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Book Synopsis Single Molecule Studies of Sequence-dependent Transcription Pausing by : Alla Shundrovsky

Download or read book Single Molecule Studies of Sequence-dependent Transcription Pausing written by Alla Shundrovsky and published by . This book was released on 2004 with total page 122 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Single Molecule Investigation of Transcription Activator-like Effector Search Dynamics

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (988 download)

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Book Synopsis Single Molecule Investigation of Transcription Activator-like Effector Search Dynamics by : Luke William Cuculis

Download or read book Single Molecule Investigation of Transcription Activator-like Effector Search Dynamics written by Luke William Cuculis and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Transcription Factor Dynamics Investigated Through Single-molecule Imaging, High-throughput Sequencing, and Neural Networks

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (134 download)

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Book Synopsis Transcription Factor Dynamics Investigated Through Single-molecule Imaging, High-throughput Sequencing, and Neural Networks by : Evan McAllister Stevens

Download or read book Transcription Factor Dynamics Investigated Through Single-molecule Imaging, High-throughput Sequencing, and Neural Networks written by Evan McAllister Stevens and published by . This book was released on 2020 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

RNA Detection

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Publisher : Humana Press
ISBN 13 : 9781493972128
Total Pages : 492 pages
Book Rating : 4.9/5 (721 download)

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Book Synopsis RNA Detection by : Imre Gaspar

Download or read book RNA Detection written by Imre Gaspar and published by Humana Press. This book was released on 2017-11-15 with total page 492 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume introduces different concepts and methods of detecting RNA in biological material in a variety of model systems. The chapters in this book discuss methods that will answer numerous biological questions that arise in the study of RNAs. Some of the topics covered in this book are single mRNA molecule detection in embryos and neurons; detection of mRNA and associated molecules by ISH-IEM on frozen sections; optimizing molecular beacons for intracellular analysis of RNA; imaging translation dynamics of single mRNA molecules in live cells; preparation of high-throughput sequencing libraries; and capturing RNA binding proteins in embryos and in cell-culture. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and tips on troubleshooting and avoiding known pitfalls. Cutting-edge and comprehensive, RNA Detection: Methods and Protocols is a valuable resource for novel and experiences scientist in the expanding field of RNAs.

A Single Molecule Approach to Investigate how AP1 Transcriptional Regulators Find Their Target Sites on DNA

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (951 download)

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Book Synopsis A Single Molecule Approach to Investigate how AP1 Transcriptional Regulators Find Their Target Sites on DNA by : Nicola Annette Don

Download or read book A Single Molecule Approach to Investigate how AP1 Transcriptional Regulators Find Their Target Sites on DNA written by Nicola Annette Don and published by . This book was released on 2015 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Single-molecule Studies of Transcription Initiation

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis Single-molecule Studies of Transcription Initiation by : Diego Armando Duchi Llumigusin

Download or read book Single-molecule Studies of Transcription Initiation written by Diego Armando Duchi Llumigusin and published by . This book was released on 2014 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Bacterial Transcriptional Control

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Publisher : Humana
ISBN 13 : 9781493954674
Total Pages : 0 pages
Book Rating : 4.9/5 (546 download)

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Book Synopsis Bacterial Transcriptional Control by : Irina Artsimovitch

Download or read book Bacterial Transcriptional Control written by Irina Artsimovitch and published by Humana. This book was released on 2016-10-05 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume is designed to be a resource of proven techniques and approaches for probing the activities of bacterial, eukaryotic, and archaeal RNA polymerases. This book features a collection of in vitro and in vivo technologies that will permit researchers to purify and probe the position and stability of RNA polymerase complexes at different points of the transcription cycle, analyze the various translocations and intermolecular movements associated with catalysis, define recruitment strategies, probe the roles of transcription factors in each stage of the cycle, highlight conserved and disparate fidelity mechanisms, analyze the resultant transcripts, and study coordination of the nascent mRNA synthesis by the RNA polymerase and mRNA translation by the ribosome. Written in the highly successful Methods of Molecular Biology series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible laboratory protocols, and key tips on troubles troubleshooting and avoiding known pitfalls. Practical and timely, Bacterial Transcriptional Controls: Methods and Protocols highlights the breadth and depth of techniques that are likely to continue shaping the transcription community in the future.

Evolution of Translational Omics

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Publisher : National Academies Press
ISBN 13 : 0309224187
Total Pages : 354 pages
Book Rating : 4.3/5 (92 download)

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Book Synopsis Evolution of Translational Omics by : Institute of Medicine

Download or read book Evolution of Translational Omics written by Institute of Medicine and published by National Academies Press. This book was released on 2012-09-13 with total page 354 pages. Available in PDF, EPUB and Kindle. Book excerpt: Technologies collectively called omics enable simultaneous measurement of an enormous number of biomolecules; for example, genomics investigates thousands of DNA sequences, and proteomics examines large numbers of proteins. Scientists are using these technologies to develop innovative tests to detect disease and to predict a patient's likelihood of responding to specific drugs. Following a recent case involving premature use of omics-based tests in cancer clinical trials at Duke University, the NCI requested that the IOM establish a committee to recommend ways to strengthen omics-based test development and evaluation. This report identifies best practices to enhance development, evaluation, and translation of omics-based tests while simultaneously reinforcing steps to ensure that these tests are appropriately assessed for scientific validity before they are used to guide patient treatment in clinical trials.