Literature DB >> 19698895

Chapter 2. New insights into flavivirus nonstructural protein 5.

Andrew D Davidson1.   

Abstract

Disease caused by flavivirus infections is an increasing world health problem. Flavivirus nonstructural protein 5 (NS5) possesses enzymatic activities required for capping and synthesis of the viral RNA genome and is essential for virus replication. NS5 is comprised of two domains. The N-terminal domain binds GTP and can perform two biochemically distinct methylation reactions required for RNA cap formation. The C-terminal domain contains RNA-dependent RNA polymerase activity. As such, NS5 is an interesting target against which antiviral drugs could be developed and research toward this goal has accelerated our understanding of NS5 structure and function in recent years. The production and purification of recombinant versions of either the full-length NS5 or the two individual NS5 domains has led to detailed enzymatic studies on NS5 and the determination of structures of the two NS5 domains. In turn, studies using a combination of structural, biochemical, and reverse genetic approaches are revealing how NS5 performs its multifunctional roles in genome replication. Aside from its localization in the membrane-bound replication complex, NS5 can be found free in the cytoplasm and for some flaviviruses in the nucleus of virus-infected cells. NS5 is phosphorylated which may potentially regulate NS5 function and trafficking. Recently, NS5 of a number of flaviviruses has been shown to interact with cellular pathways involved in the host immune response, suggesting that NS5 may play a role in viral pathogenesis. This chapter reviews recent advances in our understanding of the multifunctional roles played by NS5 in the virus lifecycle.

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Year:  2009        PMID: 19698895     DOI: 10.1016/S0065-3527(09)74002-3

Source DB:  PubMed          Journal:  Adv Virus Res        ISSN: 0065-3527            Impact factor:   9.937


  37 in total

1.  Structural insight and flexible features of NS5 proteins from all four serotypes of Dengue virus in solution.

Authors:  Wuan Geok Saw; Giancarlo Tria; Ardina Grüber; Malathy Sony Subramanian Manimekalai; Yongqian Zhao; Arun Chandramohan; Ganesh Srinivasan Anand; Tsutomu Matsui; Thomas M Weiss; Subhash G Vasudevan; Gerhard Grüber
Journal:  Acta Crystallogr D Biol Crystallogr       Date:  2015-10-31

2.  Adaptive Diversification Between Yellow Fever Virus West African and South American Lineages: A Genome-Wide Study.

Authors:  Yan Li; Zexiao Yang
Journal:  Am J Trop Med Hyg       Date:  2017-04-06       Impact factor: 2.345

3.  Flavivirus RNA cap methyltransferase: structure, function, and inhibition.

Authors:  Lihui Liu; Hongping Dong; Hui Chen; Jing Zhang; Hua Ling; Zhong Li; Pei-Yong Shi; Hongmin Li
Journal:  Front Biol (Beijing)       Date:  2010-08-01

4.  A tick-borne segmented RNA virus contains genome segments derived from unsegmented viral ancestors.

Authors:  Xin-Cheng Qin; Mang Shi; Jun-Hua Tian; Xian-Dan Lin; Dong-Ya Gao; Jin-Rong He; Jian-Bo Wang; Ci-Xiu Li; Yan-Jun Kang; Bin Yu; Dun-Jin Zhou; Jianguo Xu; Alexander Plyusnin; Edward C Holmes; Yong-Zhen Zhang
Journal:  Proc Natl Acad Sci U S A       Date:  2014-04-21       Impact factor: 11.205

5.  Point mutations in the West Nile virus (Flaviviridae; Flavivirus) RNA-dependent RNA polymerase alter viral fitness in a host-dependent manner in vitro and in vivo.

Authors:  Greta A Van Slyke; Alexander T Ciota; Graham G Willsey; Joachim Jaeger; Pei-Yong Shi; Laura D Kramer
Journal:  Virology       Date:  2012-02-23       Impact factor: 3.616

6.  TRIM79α, an interferon-stimulated gene product, restricts tick-borne encephalitis virus replication by degrading the viral RNA polymerase.

Authors:  R Travis Taylor; Kirk J Lubick; Shelly J Robertson; James P Broughton; Marshall E Bloom; Wade A Bresnahan; Sonja M Best
Journal:  Cell Host Microbe       Date:  2011-09-15       Impact factor: 21.023

Review 7.  Molecular mechanisms involved in the early steps of flavivirus cell entry.

Authors:  Bärbel Kaufmann; Michael G Rossmann
Journal:  Microbes Infect       Date:  2010-12-10       Impact factor: 2.700

8.  Assessing ubiquitination of viral proteins: Lessons from flavivirus NS5.

Authors:  R Travis Taylor; Sonja M Best
Journal:  Methods       Date:  2011-08-10       Impact factor: 3.608

9.  Serotype-specific differences in dengue virus non-structural protein 5 nuclear localization.

Authors:  Holger Hannemann; Po-Yu Sung; Han-Chen Chiu; Amjad Yousuf; Jim Bird; Siew Pheng Lim; Andrew D Davidson
Journal:  J Biol Chem       Date:  2013-06-13       Impact factor: 5.157

10.  Conformational flexibility of the Dengue virus RNA-dependent RNA polymerase revealed by a complex with an inhibitor.

Authors:  Christian G Noble; Siew Pheng Lim; Yen-Liang Chen; Chong Wai Liew; Lijian Yap; Julien Lescar; Pei-Yong Shi
Journal:  J Virol       Date:  2013-02-13       Impact factor: 5.103

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