DNA-mediated Charge Transfer Between [4Fe-4S] Cluster Glycosylases

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (741 download)

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Book Synopsis DNA-mediated Charge Transfer Between [4Fe-4S] Cluster Glycosylases by : Christine Anne Romano

Download or read book DNA-mediated Charge Transfer Between [4Fe-4S] Cluster Glycosylases written by Christine Anne Romano and published by . This book was released on 2011 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Investigations of DNA-mediated Protein Oxidation

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (919 download)

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Book Synopsis Investigations of DNA-mediated Protein Oxidation by : Anna Ruth Arnold

Download or read book Investigations of DNA-mediated Protein Oxidation written by Anna Ruth Arnold and published by . This book was released on 2015 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: DNA charge transport (CT) involves the efficient transfer of electrons or electron holes through the DNA pi-stack over long molecular distances of at least 100 base-pairs. Despite this shallow distance dependence, DNA CT is sensitive to mismatches or lesions that disrupt pi-stacking and is critically dependent on proper electronic coupling of the donor and acceptor moieties into the base stack. Favorable DNA CT is very rapid, occurring on the picosecond timescale. Because of this speed, electron holes equilibrate along the DNA pi-stack, forming a characteristic pattern of DNA damage at low oxidation potential guanine multiplets. Furthermore, DNA CT may be used in a biological context. DNA processing enzymes with 4Fe4S clusters can perform DNA-mediated electron transfer (ET) self-exchange reactions with other 4Fe4S cluster proteins, even if the proteins are quite dissimilar, as long as the DNA-bound [4Fe4S]3+/2+ redox potentials are conserved. This mechanism would allow low copy number DNA repair proteins to find their lesions efficiently within the cell. DNA CT may also be used biologically for the long-range, selective activation of redox-active transcription factors. Within this work, we pursue other proteins that may utilize DNA CT within the cell and further elucidate aspects of the DNA-mediated ET self-exchange reaction of 4Fe4S cluster proteins. Dps proteins, bacterial mini-ferritins that protect DNA from oxidative stress, are implicated in the survival and virulence of pathogenic bacteria. One aspect of their protection involves ferroxidase activity, whereby ferrous iron is bound and oxidized selectively by hydrogen peroxide, thereby preventing formation of damaging hydroxyl radicals via Fenton chemistry. Understanding the specific mechanism by which Dps proteins protect the bacterial genome could inform the development of new antibiotics. We investigate whether DNA-binding E. coli Dps can utilize DNA CT to protect the genome from a distance. An intercalating ruthenium photooxidant was employed to generate oxidative DNA damage via the flash-quench technique, which localizes to a low potential guanine triplet. We find that Dps loaded with ferrous iron, in contrast to Apo-Dps and ferric iron-loaded Dps which lack available reducing equivalents, significantly attenuates the yield of oxidative DNA damage at the guanine triplet. These data demonstrate that ferrous iron-loaded Dps is selectively oxidized to fill guanine radical holes, thereby restoring the integrity of the DNA. Luminescence studies indicate no direct interaction between the ruthenium photooxidant and Dps, supporting the DNA-mediated oxidation of ferrous iron-loaded Dps. Thus DNA CT may be a mechanism by which Dps efficiently protects the genome of pathogenic bacteria from a distance. Further work focused on spectroscopic characterization of the DNA-mediated oxidation of ferrous iron-loaded Dps. X-band EPR was used to monitor the oxidation of DNA-bound Dps after DNA photooxidation via the flash-quench technique. Upon irradiation with poly(dGdC)2, a signal arises with g = 4.3, consistent with the formation of mononuclear high-spin Fe(III) sites of low symmetry, the expected oxidation product of Dps with one iron bound at each ferroxidase site. When poly(dGdC)2 is substituted with poly(dAdT)2, the yield of Dps oxidation is decreased significantly, indicating that guanine radicals facilitate Dps oxidation. The more favorable oxidation of Dps by guanine radicals supports the feasibility of a long-distance protection mechanism via DNA CT where Dps is oxidized to fill guanine radical holes in the bacterial genome produced by reactive oxygen species. We have also explored possible electron transfer intermediates in the DNA-mediated oxidation of ferrous iron-loaded Dps. Dps proteins contain a conserved tryptophan residue in close proximity to the ferroxidase site (W52 in E. coli Dps). In comparison to WT Dps, in EPR studies of the oxidation of ferrous iron-loaded Dps following DNA photooxidation, W52Y and W52A mutants were deficient in forming the characteristic EPR signal at g = 4.3, with a larger deficiency for W52A compared to W52Y. In addition to EPR, we also probed the role of W52 Dps in cells using a hydrogen peroxide survival assay. Bacteria containing W52Y Dps survived the hydrogen peroxide challenge more similarly to those containing WT Dps, whereas cells with W52A Dps died off as quickly as cells without Dps. Overall, these results suggest the possibility of W52 as a CT hopping intermediate. DNA-modified electrodes have become an essential tool for the study of the redox chemistry of DNA processing enzymes with 4Fe4S clusters. In many cases, it is necessary to investigate different complex samples and substrates in parallel in order to elucidate this chemistry. Therefore, we optimized and characterized a multiplexed electrochemical platform with the 4Fe4S cluster base excision repair glycosylase Endonuclease III (EndoIII). Closely packed DNA films, where the protein has limited surface accessibility, produce EndoIII electrochemical signals sensitive to an intervening mismatch, indicating a DNA-mediated process. Multiplexed analysis allowed more robust characterization of the CT-deficient Y82A EndoIII mutant, as well as comparison of a new family of mutations altering the electrostatics surrounding the 4Fe4S cluster in an effort to shift the reduction potential of the cluster. While little change in the DNA-bound midpoint potential was found for this family of mutants, likely indicating the dominant effect of DNA-binding on establishing the protein redox potential, significant variations in the efficiency of DNA-mediated electron transfer were apparent. On the basis of the stability of these proteins, examined by circular dichroism, we proposed that the electron transfer pathway in EndoIII can be perturbed not only by the removal of aromatic residues but also through changes in solvation near the cluster. While the 4Fe4S cluster of EndoIII is relatively insensitive to oxidation and reduction in solution, we have found that upon DNA binding, the reduction potential of the [4Fe4S]3+/2+ couple shifts negatively by approximately 200 mV, bringing this couple into a physiologically relevant range. Demonstrated using electrochemistry experiments in the presence and absence of DNA, these studies do not provide direct molecular evidence for the species being observed. Sulfur K-edge X-ray absorbance spectroscopy (XAS) can be used to probe directly the covalency of iron-sulfur clusters, which is correlated to their reduction potential. We have shown that the Fe-S covalency of the 4Fe4S cluster of EndoIII increases upon DNA binding, stabilizing the oxidized [4Fe4S]3+ cluster, consistent with a negative shift in reduction potential. The 7% increase in Fe-S covalency corresponds to an approximately 150 mV shift, remarkably similar to DNA electrochemistry results. Therefore we have obtained direct molecular evidence for the shift in 4Fe4S reduction potential of EndoIII upon DNA binding, supporting the feasibility of our model whereby these proteins can utilize DNA CT to cooperate in order to efficiently find DNA lesions inside cells. In conclusion, in this work we have explored the biological applications of DNA CT. We discovered that the DNA-binding bacterial ferritin Dps can protect the bacterial genome from a distance via DNA CT, perhaps contributing to pathogen survival and virulence. Furthermore, we optimized a multiplexed electrochemical platform for the study of the redox chemistry of DNA-bound 4Fe4S cluster proteins. Finally, we have used sulfur K-edge XAS to obtain direct molecular evidence for the negative shift in 4Fe4S cluster reduction potential of EndoIII upon DNA binding. These studies contribute to the understanding of DNA-mediated protein oxidation within cells.

Iron-Sulfur Clusters in Chemistry and Biology

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Publisher : Walter de Gruyter GmbH & Co KG
ISBN 13 : 3110308428
Total Pages : 672 pages
Book Rating : 4.1/5 (13 download)

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Book Synopsis Iron-Sulfur Clusters in Chemistry and Biology by : Tracey Rouault

Download or read book Iron-Sulfur Clusters in Chemistry and Biology written by Tracey Rouault and published by Walter de Gruyter GmbH & Co KG. This book was released on 2014-08-20 with total page 672 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume on iron-sulfur proteins includes chapters that describe the initial discovery of iron-sulfur proteins in the 1960s to elucidation of the roles of iron sulfur clusters as prosthetic groups of enzymes, such as the citric acid cycle enzyme, aconitase, and numerous other proteins, ranging from nitrogenase to DNA repair proteins. The capacity of iron sulfur clusters to accept and delocalize single electrons is explained by basic chemical principles, which illustrate why iron sulfur proteins are uniquely suitable for electron transport and other activities. Techniques used for detection and stabilization of iron-sulfur clusters, including EPR and Mossbauer spectroscopies, are discussed because they are important for characterizing unrecognized and elusive iron sulfur proteins. Recent insights into how nitrogenase works have arisen from multiple advances, described here, including studies of high-resolution crystal structures. Numerous chapters discuss how microbes, plants, and animals synthesize these complex prosthetic groups, and why it is important to understand the chemistry and biogenesis of iron sulfur proteins. In addition to their vital importance in mitochondrial respiration, numerous iron sulfur proteins are important in maintenance of DNA integrity. Multiple rare human diseases with different clinical presentations are caused by mutations of genes in the iron sulfur cluster biogenesis pathway. Understanding iron sulfur proteins is important for understanding a rapidly expanding group of metabolic pathways important in all kingdoms of life, and for understanding processes ranging from nitrogen fixation to human disease.

Comprehensive Inorganic Chemistry II

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Publisher : Newnes
ISBN 13 : 0080965296
Total Pages : 7694 pages
Book Rating : 4.0/5 (89 download)

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Book Synopsis Comprehensive Inorganic Chemistry II by :

Download or read book Comprehensive Inorganic Chemistry II written by and published by Newnes. This book was released on 2013-07-23 with total page 7694 pages. Available in PDF, EPUB and Kindle. Book excerpt: Comprehensive Inorganic Chemistry II, Nine Volume Set reviews and examines topics of relevance to today’s inorganic chemists. Covering more interdisciplinary and high impact areas, Comprehensive Inorganic Chemistry II includes biological inorganic chemistry, solid state chemistry, materials chemistry, and nanoscience. The work is designed to follow on, with a different viewpoint and format, from our 1973 work, Comprehensive Inorganic Chemistry, edited by Bailar, Emeléus, Nyholm, and Trotman-Dickenson, which has received over 2,000 citations. The new work will also complement other recent Elsevier works in this area, Comprehensive Coordination Chemistry and Comprehensive Organometallic Chemistry, to form a trio of works covering the whole of modern inorganic chemistry. Chapters are designed to provide a valuable, long-standing scientific resource for both advanced students new to an area and researchers who need further background or answers to a particular problem on the elements, their compounds, or applications. Chapters are written by teams of leading experts, under the guidance of the Volume Editors and the Editors-in-Chief. The articles are written at a level that allows undergraduate students to understand the material, while providing active researchers with a ready reference resource for information in the field. The chapters will not provide basic data on the elements, which is available from many sources (and the original work), but instead concentrate on applications of the elements and their compounds. Provides a comprehensive review which serves to put many advances in perspective and allows the reader to make connections to related fields, such as: biological inorganic chemistry, materials chemistry, solid state chemistry and nanoscience Inorganic chemistry is rapidly developing, which brings about the need for a reference resource such as this that summarise recent developments and simultaneously provide background information Forms the new definitive source for researchers interested in elements and their applications; completely replacing the highly cited first edition, which published in 1973

Biochemistry, Biosynthesis and Human Diseases

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Publisher : Walter de Gruyter GmbH & Co KG
ISBN 13 : 3110479850
Total Pages : 492 pages
Book Rating : 4.1/5 (14 download)

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Book Synopsis Biochemistry, Biosynthesis and Human Diseases by : Tracey Rouault

Download or read book Biochemistry, Biosynthesis and Human Diseases written by Tracey Rouault and published by Walter de Gruyter GmbH & Co KG. This book was released on 2017-09-25 with total page 492 pages. Available in PDF, EPUB and Kindle. Book excerpt: This volume on iron-sulfur proteins includes chapters that discuss how microbes, plants, and animals synthesize these complex prosthetic groups, and why it is important to understand the chemistry and biogenesis of iron sulfur proteins. In addition to their vital importance in mitochondrial respiration, numerous iron sulfur proteins are important in maintenance of DNA integrity. Multiple rare human diseases with different clinical presentations are caused by mutations of genes in the iron sulfur cluster biogenesis pathway. Understanding iron sulfur proteins is important for understanding a rapidly expanding group of metabolic pathways important in all kingdoms of life, and for understanding processes ranging from nitrogen fixation to human disease.

Charge Transfer in DNA

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Publisher : John Wiley & Sons
ISBN 13 : 3527606904
Total Pages : 245 pages
Book Rating : 4.5/5 (276 download)

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Book Synopsis Charge Transfer in DNA by : Hans-Achim Wagenknecht

Download or read book Charge Transfer in DNA written by Hans-Achim Wagenknecht and published by John Wiley & Sons. This book was released on 2006-05-12 with total page 245 pages. Available in PDF, EPUB and Kindle. Book excerpt: The past few years have witnessed intense research in this fascinating field as well as many controversial discussions. Now the time is ripe for a comprehensive book covering not only theoretical aspects, but also such mechanistic topics as principles and mechanisms of photoinduced charge injection, transport and trapping in DNA, sequence-dependent DNA dynamics, spectroscopic investigations of hole transport and much more. From the contents: * Principles and Mechanisms of Photoinduced Charge Injection, Transport and Trapping in DNA * Sequence-Dependent DNA Dynamics: The Regulator of DNA-Mediated Charge Transport * Excess Electron Transfer in DNA Probed with Flavin and Thymine Dimer Modified Oligonucleotides * Dynamics of Photoinitiated Hole and Electron Injection in Duplex DNA * Spectroscopic Investigation of Oxidative Hole Transfer via Adenine Hopping in DNA * Chemical Probing of Reductive Electron Transfer in DNA * Chemical Approach for Modulating Hole Transport in DNA * Spectroscopic Investigation of Charge Transfer in DNA * Spectroscopic Probing of Ultrafast Structural Relaxation and Electron Transfer Dynamics in DNA Edited by Hans-Achim Wagenknecht, and written by renowned international authors, this book provides an excellent overview with high quality contributions, making it a "must-have" for everyone working in the field.

Long-Range Charge Transfer in DNA I

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Publisher : Springer Science & Business Media
ISBN 13 : 9783540201274
Total Pages : 240 pages
Book Rating : 4.2/5 (12 download)

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Book Synopsis Long-Range Charge Transfer in DNA I by : Gary B. Schuster

Download or read book Long-Range Charge Transfer in DNA I written by Gary B. Schuster and published by Springer Science & Business Media. This book was released on 2004-03-24 with total page 240 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Demethylation by the DEMETER DNA Glycosylase in Arabidopsis

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ISBN 13 :
Total Pages : 314 pages
Book Rating : 4.:/5 (35 download)

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Book Synopsis Demethylation by the DEMETER DNA Glycosylase in Arabidopsis by : Jin Hoe Huh

Download or read book Demethylation by the DEMETER DNA Glycosylase in Arabidopsis written by Jin Hoe Huh and published by . This book was released on 2006 with total page 314 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Materials Science of DNA

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Publisher : CRC Press
ISBN 13 : 1439827427
Total Pages : 338 pages
Book Rating : 4.4/5 (398 download)

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Book Synopsis Materials Science of DNA by : Jung-II Jin

Download or read book Materials Science of DNA written by Jung-II Jin and published by CRC Press. This book was released on 2016-04-19 with total page 338 pages. Available in PDF, EPUB and Kindle. Book excerpt: The field of materials science and technology has undergone revolutionary advances due to the development of novel analytical tools, functional materials, and multidisciplinary approaches to engineering. Additionally, theoretical predictions combined with increasingly improved models and computational capabilities are making impressive contribution

Charge Migration in DNA

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Publisher : Springer Science & Business Media
ISBN 13 : 354072494X
Total Pages : 301 pages
Book Rating : 4.5/5 (47 download)

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Book Synopsis Charge Migration in DNA by : Tapash Chakraborty

Download or read book Charge Migration in DNA written by Tapash Chakraborty and published by Springer Science & Business Media. This book was released on 2007-08-15 with total page 301 pages. Available in PDF, EPUB and Kindle. Book excerpt: Charge migration through DNA has been the focus of considerable interest in recent years. This book presents contributions from an international team of researchers active in this field. It contains a wide range of topics that includes the mathematical background of the quantum processes involved, the role of charge transfer in DNA radiation damage, a new approach to DNA sequencing, DNA photonics, and many others.

na

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Publisher : Academic Press
ISBN 13 : 0123851912
Total Pages : 653 pages
Book Rating : 4.1/5 (238 download)

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Book Synopsis na by : Mike de la Flor

Download or read book na written by Mike de la Flor and published by Academic Press. This book was released on with total page 653 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Spectroscopic Characterization of DNA-mediated Charge Transfer

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ISBN 13 :
Total Pages : 426 pages
Book Rating : 4.:/5 (437 download)

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Book Synopsis Spectroscopic Characterization of DNA-mediated Charge Transfer by : Christopher Ryan Treadway

Download or read book Spectroscopic Characterization of DNA-mediated Charge Transfer written by Christopher Ryan Treadway and published by . This book was released on 2003 with total page 426 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Long-Range Charge Transfer in DNA I

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Publisher : Springer
ISBN 13 : 9783540201274
Total Pages : 0 pages
Book Rating : 4.2/5 (12 download)

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Book Synopsis Long-Range Charge Transfer in DNA I by : Gary B. Schuster

Download or read book Long-Range Charge Transfer in DNA I written by Gary B. Schuster and published by Springer. This book was released on 2004-03-24 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: T. Douki, J.-L. Ravanat, D. Angelov, J.R. Wagner, J. Cadet: Effects of Duplex Stability on Charge-Transfer Efficiency within DNA .- B. Giese: Hole Injection and Hole Transfer Through DNA. The Hopping Mechanism .- F.D. Lewis, M.R. Wasielewski: Dynamics and Equilibrium for Single Step Hole Transport Processes in Duplex DNA .- M.A. O'Neill, J.K. Barton: DNA-Mediated Charge Transport Chemistry and Biology .- K. Kawai, T. Majima: Hole Transfer in DNA by Monitoring the Transient Absorption of Radical Cations of Organic Molecules Conjugated to DNA .- G.B. Schuster, U. Landman: The Mechanism of Long-Distance Radical Cation Transport in Duplex DNA: Ion-Gated Hopping of Polaron-Like Distortions .- K. Nakatani, I. Saito: The Charge Transport in Duplex DNA Containing Modified Nucletotide Bases .- C. Behrens, M.K. Cichon, F. Grolle, U. Hennecke, T. Carell: Excess Electron Transfer in Defined Donor- Nucleobase and Donor-DNA-Acceptor Systems

DNA-mediated Charge Transfer in Biological Contexts

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Publisher :
ISBN 13 :
Total Pages : 106 pages
Book Rating : 4.:/5 (437 download)

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Book Synopsis DNA-mediated Charge Transfer in Biological Contexts by : Anand Vadehra

Download or read book DNA-mediated Charge Transfer in Biological Contexts written by Anand Vadehra and published by . This book was released on 2003 with total page 106 pages. Available in PDF, EPUB and Kindle. Book excerpt:

DNA Repair Enzymes: Cell, Molecular, and Chemical Biology

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Publisher : Academic Press
ISBN 13 : 0128118474
Total Pages : 480 pages
Book Rating : 4.1/5 (281 download)

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Book Synopsis DNA Repair Enzymes: Cell, Molecular, and Chemical Biology by :

Download or read book DNA Repair Enzymes: Cell, Molecular, and Chemical Biology written by and published by Academic Press. This book was released on 2017-06-20 with total page 480 pages. Available in PDF, EPUB and Kindle. Book excerpt: DNA Repair Enzymes, Part A, Volume 591 is the latest volume in the Methods in Enzymology series and the first part of a thematic that focuses on DNA repair enzymes. Topics in this new release include chapters on the Optimization of Native and Formaldehyde iPOND Techniques for Use in Suspension Cells, the Proteomic Analyses of the Eukaryotic Replication Machinery, DNA Fiber Analysis: Mind the Gap!, Comet-FISH for Ultrasensitive Strand-Specific Detection of DNA Damage in Single Cells, Examining DNA Double-Strand Break Repair in a Cell Cycle-Dependent Manner, Base Excision Repair Variants in Cancer, and Fluorescence-Based Reporters for Detection of Mutagenesis in E. coli. Includes contributions from leading authorities working in enzymology Focuses on DNA repair enzymes Informs and updates on all the latest developments in the field of enzymology

Long-Range Charge Transfer in DNA II

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Publisher : Springer
ISBN 13 : 9783662144367
Total Pages : 245 pages
Book Rating : 4.1/5 (443 download)

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Book Synopsis Long-Range Charge Transfer in DNA II by : Gary B. Schuster

Download or read book Long-Range Charge Transfer in DNA II written by Gary B. Schuster and published by Springer. This book was released on 2014-03-12 with total page 245 pages. Available in PDF, EPUB and Kindle. Book excerpt: with contributions by numerous experts

Charge Transfer Through Dna: Probing [pi] Stack Accessibility and Long Range Oxidative Damage by Dna-mediated Electron Transfer

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Publisher :
ISBN 13 :
Total Pages : 80 pages
Book Rating : 4.:/5 (437 download)

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Book Synopsis Charge Transfer Through Dna: Probing [pi] Stack Accessibility and Long Range Oxidative Damage by Dna-mediated Electron Transfer by : Lee Adam Friedman

Download or read book Charge Transfer Through Dna: Probing [pi] Stack Accessibility and Long Range Oxidative Damage by Dna-mediated Electron Transfer written by Lee Adam Friedman and published by . This book was released on 1997 with total page 80 pages. Available in PDF, EPUB and Kindle. Book excerpt: