Functional Interactions of Structural and NS Proteins of Hepatitis C Virus

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ISBN 13 :
Total Pages : 362 pages
Book Rating : 4.:/5 (11 download)

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Book Synopsis Functional Interactions of Structural and NS Proteins of Hepatitis C Virus by : Hamed Gouklani

Download or read book Functional Interactions of Structural and NS Proteins of Hepatitis C Virus written by Hamed Gouklani and published by . This book was released on 2011 with total page 362 pages. Available in PDF, EPUB and Kindle. Book excerpt: Hepatitis C virus (HCV) is a small enveloped virus with a positive-sense single stranded RNA genome. Based on its molecular genetic characteristics, the virus has been classified into the Hepacivirus genus of the family Flaviviridae. HCV is one of the major causes of chronic hepatitis which can lead to liver cirrhosis and hepatocellular carcinoma. According to the recent WHO published data, 123 million individuals are infected with HCV (approximately 3% of the world's population) throughout the world. Due to its highly variable nature, HCV is classified into six major genotypes. The HCV genome encodes a single polyprotein that is cleaved to yield at least 10 mature proteins (C, E1, E2, p7, NS2, NS3, NS4A, NS4B, NS5A and NS5B). The recently developed HCV cell culture system, based on the JFH1 strain of HCV, has provided an opportunity to study the role of the viral proteins in the complete HCV replication cycle in human hepatoma cells. How the viral proteins functionally interact during replication of HCV in cell culture is not completely understood. Passage of cell cultures transfected with HCV genomic RNA containing attenuating mutations allows for the selection of genomes with second site compensatory mutations that restore replication to wild type levels. Using this approach, the functional interactions of p7 and E2 with other viral proteins during HCV replication was investigated.A small protein of 63 amino acids, p7 is encoded at the junction of the structural and non-strucutural region. p7 is a highly hydrophobic, integral membrane protein and is classified in the viroporin family. In this thesis, it is shown that p7 is critical for production of viral particles and is implicated in a late step of particle assembly. Since the protein plays a critical role in the virus life cycle, chemical compounds that block p7 function are potential candidates for anti-viral therapy. In this thesis, a chimeric JFH1 genome that encodes the p7 protein of genotype (GT) 1b strain J4 was generated. The intergenotypic chimeric genome was nonviable in human hepatoma cells and infectious chimeric virions were only produced after cells harboring the chimeric genomes were passaged several times. To investigate the emergence of compensatory mutations in the viral proteins during cell passaging, the consensus sequences of the entire polyprotein coding regions of the wild type JFH1 and three chimeric viruses were determined. Sequence analysis revealed mutations in core, NS2, NS5A and NS5B. Reverse genetic analysis demonstrated that any one of the single mutations restored the infectivity of the defective chimeric genomes. These data suggest that there are critical genetic interactions between p7 with core, NS2, NS5A and NS5B. In addition, a stable physical interaction between p7 and NS2 is shown in a transient expression system. The HCV glycoproteins E1 and E2 are present on the surface of virions as a heterodimer that attach virions to host cell receptors and facilitate virus fusion and entry. HCV entry proceeds via attachment to glycosaminoglycans followed by binding to scavenger receptor type B class I, and the tetraspanin CD81. Recently, claudin-1 and occludin have emerged as additional receptors required for entry. E2 has a receptor binding domain (E2661RBD) that conatins three variable regions, hypervariable regions 1 (HVR1), HVR2 and the intergenotypic variable region (igVR). In this thesis, HVR1 of E2 was deleted in the context of full-length replication comptetent HCV. Deletion of HVR1 increases CD81-binding ability of the mutant and also increases its susceptibility to neutralizing antibody MAb 24. The infectivity of the HVR1 deleted virions was attenuated approximately 10-fold prior to accumulation of compensatory mutations. Sequencing of cDNA obtained from reverted virions revealed mutations in E1 (I262L) and E2 (N415D). Reverse genetic studies revealed that I262L improved the infectivity of HVR1 deleted virions 2.5 fold while N415D restored infectivity to wild type levels. These data suggest that mutations within E1 or E2 can compensate for the reduction in infectivity observed for HVR1 deleted viruses.In summary, this thesis demonstrates the importance of functional interactions between HCV proteins during virus morphogenesis and infectivity.

Protein-protein Interactions of the Unstructured Domain II of Hepatitis C Virus NS5A

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Book Synopsis Protein-protein Interactions of the Unstructured Domain II of Hepatitis C Virus NS5A by : Marianne Ngure

Download or read book Protein-protein Interactions of the Unstructured Domain II of Hepatitis C Virus NS5A written by Marianne Ngure and published by . This book was released on 2017 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: "The hepatitis C virus (HCV) non-structural 5A (NS5A) protein is a multi-functional, RNA binding protein and an essential component of the HCV replication complex. It is subdivided into 3 domains; a highly structured domain I (DI), while DII and DIII are intrinsically unstructured yet mediate crucial interactions with several viral and cellular host factors. NS5A-DII protein mediates the interaction with Cyclophilin A (CypA), a cellular cis/trans isomerase essential for viral replication. Cyclosporine A (CsA), an inhibitor of CypA, inhibits this interaction and suppresses HCV replication. Mutations that confer resistance to CsA and derivatives have been identified within NS5A-DII (D320E and Y321N in Con 1b). These mutations revive HCV replication in vivo, but the underlying mechanism for resistance remains elusive. Using a Förster Resonance Energy Transfer (FRET)-based approach, we determined a slower rate of dissociation of the resistant NS5A-DII complex with CypA, in the presence of CsA. The slow complex dissociation directly correlated with the increasing level of resistance conferred by either single or double mutations within NS5A-DII. By prolonging the protein-protein complex, D320E and Y321N specifically limit the inhibitory effect of CsA on the NS5A-DII complex with CypA, providing a possible biochemical mechanism of resistance to CypA inhibitors. Apart from its CypA binding properties, NS5A-DII also binds RNA, and interacts with the HCV RNA-dependent RNA polymerase NS5B. However, the largely disordered nature of NS5A-DII has limited the characterization of the structure and functional relevance of these interactions. A mass spectrometry (MS)-assisted foot-printing approach provided an in-depth biochemical characterization of the molecular determinants of protein-protein and nucleoprotein interactions of HCV NS5A-DII with CypA, NS5B and RNA. Overlapping but definitive binding sites for each of the three macromolecules were determined. The conserved residue W316 was identified as a principle mediator of protein-protein interaction (CypA and NS5B) while an arginine-rich region of NS5A-DII was crucial for RNA binding. Specifically, NS5A-DII K308 residue was indispensable for RNA-binding. A novel binding site of NS5A-DII on the NS5B polymerase was mapped predominantly to a region associated with RNA binding. Additionally, binding of NS5A-DII diminished the RNA binding and RNA synthesis activity of NS5B polymerase. This implies a potential regulatory function of NS5A-DII on NS5B polymerase activity. Taken together, this work pinpoints key residues in the intrinsically disordered NS5A-DII that necessitate specific viral and host interactions. NS5A-DII has been plucked from obscurity as we begin to understand the biochemical functional relevance for these interactions, and their significance to HCV replication." --

Functional Characterization of Hepatitis C Virus Non-structural Protein 4B and Viral Replication Factories

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ISBN 13 :
Total Pages : 188 pages
Book Rating : 4.:/5 (869 download)

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Book Synopsis Functional Characterization of Hepatitis C Virus Non-structural Protein 4B and Viral Replication Factories by : David Paul

Download or read book Functional Characterization of Hepatitis C Virus Non-structural Protein 4B and Viral Replication Factories written by David Paul and published by . This book was released on 2013 with total page 188 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Structural and Functional Analysis of the Hepatitis C Virus Non-structural Protein 5A

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ISBN 13 :
Total Pages : 20 pages
Book Rating : 4.:/5 (614 download)

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Book Synopsis Structural and Functional Analysis of the Hepatitis C Virus Non-structural Protein 5A by : Nicole Appel

Download or read book Structural and Functional Analysis of the Hepatitis C Virus Non-structural Protein 5A written by Nicole Appel and published by . This book was released on 2004 with total page 20 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Hepatitis C Virus-host Interactions

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ISBN 13 :
Total Pages : 274 pages
Book Rating : 4.:/5 ( download)

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Book Synopsis Hepatitis C Virus-host Interactions by : Vanessa Fontanes

Download or read book Hepatitis C Virus-host Interactions written by Vanessa Fontanes and published by . This book was released on 2008 with total page 274 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Functional Dissection of the Hepatitis C Virus Non-structural Proteins and MiR-122 in Viral Replication and Translation

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ISBN 13 :
Total Pages : pages
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Book Synopsis Functional Dissection of the Hepatitis C Virus Non-structural Proteins and MiR-122 in Viral Replication and Translation by : Philipp Schult

Download or read book Functional Dissection of the Hepatitis C Virus Non-structural Proteins and MiR-122 in Viral Replication and Translation written by Philipp Schult and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Biochemical and Biological Investigations of Hepatitis C Virus Non-structural Protein Interactions

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ISBN 13 :
Total Pages : 344 pages
Book Rating : 4.:/5 (44 download)

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Book Synopsis Biochemical and Biological Investigations of Hepatitis C Virus Non-structural Protein Interactions by : Thomas Alan Jennings

Download or read book Biochemical and Biological Investigations of Hepatitis C Virus Non-structural Protein Interactions written by Thomas Alan Jennings and published by . This book was released on 2008 with total page 344 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Functional Analysis of Hepatitis C Virus Non-structural Protein (NS) 3 Protease and Viral Cofactor NS4A.

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Total Pages : pages
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Book Synopsis Functional Analysis of Hepatitis C Virus Non-structural Protein (NS) 3 Protease and Viral Cofactor NS4A. by :

Download or read book Functional Analysis of Hepatitis C Virus Non-structural Protein (NS) 3 Protease and Viral Cofactor NS4A. written by and published by . This book was released on 2008 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The hepatitis C virus (HCV) was identified in 1989 as the major causative agent of transfusion-associated non-A, non-B hepatitis and today represents a worldwide health crisis with prevalence estimates of 2.2%. HCV-specific therapeutics have never been more urgently needed. One of the validated drug targets is the non-structural (NS) protein 3 (NS3) membrane-bound protease. The major aim of this thesis was characterization of NS3 allosteric activation by its viral cofactor, NS4A. We hypothesized that there would be specific residues that dominate the interaction between NS3 and NS4A, and further hypothesized that binding and activation may be separate events mediated by different residues. This thesis details the development of novel cell-based assays for detection of NS3-4A protease activity and heterocomplex formation. The protease assay substrate was a membrane-targeted intracellular protein, which upon proteolysis released a red fluorescent protein (FP) reporter, DsRed-Express, into the cytoplasm; this change was detected by microscopy or quantified by Western blotting. The complex formation assay detected fluorescence resonance energy transfer (FRET) between yellow and cyan FP-tagged NS3 and NS4A, respectively. Our data shows binding can be functionally separated from activation. We identified two NS4A residues (I25 and I29) important for NS3 binding and two NS4A residues (V23 and I25) important for NS3 activation. Therefore the binding-pockets of these residues are prime targets for small-molecule therapeutic development. In addition, I have compared the NS3-4A substrate sequence cleavage efficiencies in vivo. I have been able to show that the activation-dependent NS4B/NS5A junction is processed efficiently and the NS4A/NS4B junction is not. I have also shown NS3-4A substrate specificity is not modulated by replicase components; however the specific activity of this enzyme is increased. The strength of this thesis work stems from the novel and creative develop.

Functional Analysis of Domain I of the Hepatitis C Virus Non-structural NS5A Protein

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ISBN 13 :
Total Pages : 230 pages
Book Rating : 4.:/5 (15 download)

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Book Synopsis Functional Analysis of Domain I of the Hepatitis C Virus Non-structural NS5A Protein by : Chunhong Yin

Download or read book Functional Analysis of Domain I of the Hepatitis C Virus Non-structural NS5A Protein written by Chunhong Yin and published by . This book was released on 2018 with total page 230 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Interactions Between the Hepatitis C Virus Non-structural NS5A Protein and Cellular Signalling Pathways

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Total Pages : pages
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Book Synopsis Interactions Between the Hepatitis C Virus Non-structural NS5A Protein and Cellular Signalling Pathways by : Andrew Macdonald

Download or read book Interactions Between the Hepatitis C Virus Non-structural NS5A Protein and Cellular Signalling Pathways written by Andrew Macdonald and published by . This book was released on 2001 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

The Liver

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Publisher : John Wiley & Sons
ISBN 13 : 1119436826
Total Pages : 1156 pages
Book Rating : 4.1/5 (194 download)

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Book Synopsis The Liver by : Irwin M. Arias

Download or read book The Liver written by Irwin M. Arias and published by John Wiley & Sons. This book was released on 2020-03-09 with total page 1156 pages. Available in PDF, EPUB and Kindle. Book excerpt: Bridging the gap between basic scientific advances and the understanding of liver disease — the extensively revised new edition of the premier text in the field. The latest edition of The Liver: Biology and Pathobiology remains a definitive volume in the field of hepatology, relating advances in biomedical sciences and engineering to understanding of liver structure, function, and disease pathology and treatment. Contributions from leading researchers examine the cell biology of the liver, the pathobiology of liver disease, the liver’s growth, regeneration, metabolic functions, and more. Now in its sixth edition, this classic text has been exhaustively revised to reflect new discoveries in biology and their influence on diagnosing, managing, and preventing liver disease. Seventy new chapters — including substantial original sections on liver cancer and groundbreaking advances that will have significant impact on hepatology — provide comprehensive, fully up-to-date coverage of both the current state and future direction of hepatology. Topics include liver RNA structure and function, gene editing, single-cell and single-molecule genomic analyses, the molecular biology of hepatitis, drug interactions and engineered drug design, and liver disease mechanisms and therapies. Edited by globally-recognized experts in the field, this authoritative volume: Relates molecular physiology to understanding disease pathology and treatment Links the science and pathology of the liver to practical clinical applications Features 16 new “Horizons” chapters that explore new and emerging science and technology Includes plentiful full-color illustrations and figures The Liver: Biology and Pathobiology, Sixth Edition is an indispensable resource for practicing and trainee hepatologists, gastroenterologists, hepatobiliary and liver transplant surgeons, and researchers and scientists in areas including hepatology, cell and molecular biology, virology, and drug metabolism.

Virus Taxonomy

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Publisher : Elsevier
ISBN 13 : 0123846846
Total Pages : 1463 pages
Book Rating : 4.1/5 (238 download)

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Book Synopsis Virus Taxonomy by : International Committee on Taxonomy of Viruses

Download or read book Virus Taxonomy written by International Committee on Taxonomy of Viruses and published by Elsevier. This book was released on 2011-10-25 with total page 1463 pages. Available in PDF, EPUB and Kindle. Book excerpt: The practical need to partition the world of viruses into distinguishable, universally agreed upon entities is the ultimate justification for developing a virus classification system. Since 1971, the International Committee on Taxonomy of Viruses (ICTV) operating on behalf of the world community of virologists has taken on the task of developing a single, universal taxonomic scheme for all viruses infecting animals (vertebrate, invertebrates, and protozoa), plants (higher plants and algae), fungi, bacteria, and archaea. The current report builds on the accumulated taxonomic construction of the eight previous reports dating back to 1971 and records the proceedings of the Committee since publication of the last report in 2005. Representing the work of more than 500 virologists worldwide, this report is the authoritative reference for virus organization, distinction, and structure.

Structural and Functional Characterisation of the Hepatitis C Virus Proteins P7, Ns2-3 and Ns5A

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Book Synopsis Structural and Functional Characterisation of the Hepatitis C Virus Proteins P7, Ns2-3 and Ns5A by : Toshana Lauria Foster

Download or read book Structural and Functional Characterisation of the Hepatitis C Virus Proteins P7, Ns2-3 and Ns5A written by Toshana Lauria Foster and published by . This book was released on 2010 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Flexible Viruses

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Publisher : John Wiley & Sons
ISBN 13 : 0470618310
Total Pages : 532 pages
Book Rating : 4.4/5 (76 download)

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Book Synopsis Flexible Viruses by : Vladimir Uversky

Download or read book Flexible Viruses written by Vladimir Uversky and published by John Wiley & Sons. This book was released on 2012-02-07 with total page 532 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book provides up-to-date information on experimental and computational characterization of the structural and functional properties of viral proteins, which are widely involved in regulatory and signaling processes. With chapters by leading research groups, it features current information on the structural and functional roles of intrinsic disorders in viral proteomes. It systematically addresses the measles, HIV, influenza, potato virus, forest virus, bovine virus, hepatitis, and rotavirus as well as viral genomics. After analyzing the unique features of each class of viral proteins, future directions for research and disease management are presented.

Saliva Protection and Transmissible Diseases

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Publisher : Academic Press
ISBN 13 : 0128136820
Total Pages : 124 pages
Book Rating : 4.1/5 (281 download)

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Book Synopsis Saliva Protection and Transmissible Diseases by : Crispian Scully

Download or read book Saliva Protection and Transmissible Diseases written by Crispian Scully and published by Academic Press. This book was released on 2017-07-19 with total page 124 pages. Available in PDF, EPUB and Kindle. Book excerpt: Saliva Protection and Transmissible Diseases provides a review of saliva protection, raising debate on micro-organisms potentially transmissible in saliva, and also considering the evidence on diseases that may be transmitted by kissing. Saliva is a complex body fluid essential to health, especially mastication, swallowing and speech, and hyposalivation can lead to dysfunction and even infection. More serious pathogens, such as herpes viruses and papillomaviruses can be conveyed by kissing, as can potentially lethal micro-organisms present in some saliva, such as meningococci, fungal organisms and Ebola viruses. Stipulates the defensive roles of saliva, an important topic not previously reviewed in-depth in literature Provides awareness that saliva also transmits infectious agents that can produce serious or even lethal diseases Gives understanding that kissing may be an at-risk practice

Structural and Functional Analysis of the Hepatitis C Virus Non-structural Protein 5A.

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Book Synopsis Structural and Functional Analysis of the Hepatitis C Virus Non-structural Protein 5A. by :

Download or read book Structural and Functional Analysis of the Hepatitis C Virus Non-structural Protein 5A. written by and published by . This book was released on 2004 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Das Hepatitis C Virus (HCV) ist ein umhülltes RNA Virus aus der Familie der Flaviviridae. Sein Genom kodiert für ein ca. 3000 Aminosäuren langes Polyprotein, welches co- und posttranslational in seine funktionellen Einheiten gespalten wird. Eines dieser viralen Proteine ist NS5A. Es handelt sich hierbei um ein stark phosphoryliertes Protein, das eine amphipatische α-Helix im Amino-Terminus trägt, welche für die Membran-Assoziation von NS5A verantwortlich ist. Welche Rolle die Phosphorylierung für die Funktion des Proteins spielt, bzw. welche Funktion NS5A überhaupt ausübt, ist zur Zeit noch unklar. Beobachtungen lassen Vermutungen über eine Funktion von NS5A bei der Resistenz infizierter Zellen gegenüber Interferon-alpha zu. Weiterhin wird vermutet, das NS5A als Komponente des membranständigen HCV Replikasekomplexes an der RNA Replikation beteiligt ist. Das Ziel dieser Doktorarbeit war es, die Funktion von NS5A für die RNA Replikation zu untersuchen. Zu diesem Zweck wurde eine Serie von Phosphorylierungsstellen-Mutanten generiert, die auf Ihre Replikationsfähigkeit und den Phosphorylierungsstatus hin untersucht wurden. Wir fanden, dass bestimmte Serin-Substitutionen im Zentrum von NS5A zu einer gesteigerten RNA Replikation führten, bei gleichzeitig reduzierter NS5A Hyperphosphorylierung. Weiterhin studierten wir den Einfluß von Mutationen in der Amino-terminalen amphipatischen α-Helix von NS5A auf die RNA-Replikation, sowie Phosphorylierung und subzelluläre Lokalisation des Proteins. Wir fanden, dass geringfügige strukturelle Veränderungen der amphipatischen Helix zu einer veränderten subzellulären Lokalisation von NS5A führten, was mit einer reduzierten oder komplett inhibierten RNA Replikation einherging. Zudem interferierten die strukturellen Veränderungen mit der Hyperphosphorylierung des Proteins, was den Schluß nahe legt, dass die amphipatische Helix eine wichtige strukturelle Komponente des Proteins darstellt, die für die korrekte Faltung und Phosphorylierung.

Combining High-resolution Genetics and Imaging for the Study of Hepatitis C Virus Proteins Critical for HCV Assembly in Infected Host Cells

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ISBN 13 :
Total Pages : 148 pages
Book Rating : 4.:/5 (871 download)

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Book Synopsis Combining High-resolution Genetics and Imaging for the Study of Hepatitis C Virus Proteins Critical for HCV Assembly in Infected Host Cells by : Roland Gilbert Remenyi

Download or read book Combining High-resolution Genetics and Imaging for the Study of Hepatitis C Virus Proteins Critical for HCV Assembly in Infected Host Cells written by Roland Gilbert Remenyi and published by . This book was released on 2014 with total page 148 pages. Available in PDF, EPUB and Kindle. Book excerpt: The establishment of a cell culture system for producing infectious hepatitis C virus (HCV) prompted genetic and functional studies of viral proteins and their roles in the assembly process. Since then, all ten viral proteins have been implicated in HCV assembly. Nonetheless, the exact location of the assembly site within an infected host cell remains unknown. Moreover, an understanding of the chronology of events and individual protein contributions at different stages of the assembly process has been difficult to obtain. The two studies comprising this dissertation apply high-resolution genetics and high-resolution imaging to the study of HCV in cell culture. Study 1 employs a high-resolution genetics approach to reveal a functional map of the entire HCV genome. Next-generation sequencing of an insertion mutant library following passage in cell culture revealed genetic footprints that reflected known biological functions of the underlying protein regions. We show how these genetic footprints can serve as a resource to identify flexible regions that tolerate insertion of tags useful for a variety of protein detection methods. Moreover, using the genetic footprints, we identify a region in the NS4B protein that plays a role in post-RNA-replication steps. Study 2 examines HCV assembly through imaging, applying electron microscopy, electron tomography, superresolution light microscopy, multi-color fluorescence microscopy and live-cell imaging to the study of virus assembly. Our results indicate a juxtaposition of LDs, virus-like particles, membrane vesicles, clusters of HCV core protein and areas containing core-E2-NS5A proteins. The high-resolution snapshots underscore the functional compartmentalization of the LD environment, which provides viral proteins with membranous platforms to carry out a complex process such as virion assembly. We also show how our imaging platform can aid in the phenotypic characterization of an assembly-deficient mutant NS5A virus. The two studies presented in this dissertation further our understanding of the contributions of non-structural proteins such as NS4B and NS5A to the HCV assembly process. We suggest that the combination of the high-resolution genetic platform of study 1 and the high-resolution imaging platform of study 2 facilitates the identification and phenotypic characterization of viral protein regions involved in HCV assembly. A streamlined approach that integrates these two methods has the potential to identify additional targets for therapeutic intervention at post-genome-replication steps.