Literature DB >> 19244330

Mitochondrion-enriched anionic phospholipids facilitate flock house virus RNA polymerase membrane association.

Kenneth A Stapleford1, Doron Rapaport, David J Miller.   

Abstract

One characteristic of all positive-strand RNA viruses is the necessity to assemble viral RNA replication complexes on host intracellular membranes, a process whose molecular details are poorly understood. To study viral replication complex assembly we use the established model system of Flock House virus (FHV), which assembles its replication complexes on the mitochondrial outer membrane. The FHV RNA-dependent RNA polymerase, protein A, is the only viral protein necessary for genome replication in the budding yeast Saccharomyces cerevisiae. To examine the host components involved in protein A-membrane interactions, an initial step of FHV RNA replication complex assembly, we established an in vitro protein A membrane association assay. Protein A translated in vitro rapidly and specifically associated with mitochondria isolated from yeast, insect, and mammalian cells. This process was temperature dependent but independent of protease-sensitive mitochondrial outer membrane components or the host mitochondrial import machinery. Furthermore, lipid-binding studies revealed that protein A preferentially bound to specific anionic phospholipids, in particular the mitochondrion-specific phospholipid cardiolipin. These studies implicate membrane phospholipids as important host determinants for FHV RNA polymerase membrane association and provide evidence for the involvement of host phospholipids in positive-strand RNA virus membrane-specific targeting.

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Year:  2009        PMID: 19244330      PMCID: PMC2668453          DOI: 10.1128/JVI.00040-09

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  62 in total

1.  Purification of Saccharomcyes cerevisiae mitochondria devoid of microsomal and cytosolic contaminations.

Authors:  C Meisinger; T Sommer; N Pfanner
Journal:  Anal Biochem       Date:  2000-12-15       Impact factor: 3.365

2.  Cardiolipin provides specificity for targeting of tBid to mitochondria.

Authors:  M Lutter; M Fang; X Luo; M Nishijima; X Xie; X Wang
Journal:  Nat Cell Biol       Date:  2000-10       Impact factor: 28.824

Review 3.  Contact sites between the outer and inner membrane of mitochondria-role in protein transport.

Authors:  Andreas S Reichert; Walter Neupert
Journal:  Biochim Biophys Acta       Date:  2002-09-02

4.  Molecular chaperones Hsp90 and Hsp70 deliver preproteins to the mitochondrial import receptor Tom70.

Authors:  Jason C Young; Nicholas J Hoogenraad; F Ulrich Hartl
Journal:  Cell       Date:  2003-01-10       Impact factor: 41.582

5.  Signal-anchor domains of proteins of the outer membrane of mitochondria: structural and functional characteristics.

Authors:  Thomas Waizenegger; Tincuta Stan; Walter Neupert; Doron Rapaport
Journal:  J Biol Chem       Date:  2003-08-13       Impact factor: 5.157

6.  Machinery for protein sorting and assembly in the mitochondrial outer membrane.

Authors:  Nils Wiedemann; Vera Kozjak; Agnieszka Chacinska; Birgit Schönfisch; Sabine Rospert; Michael T Ryan; Nikolaus Pfanner; Chris Meisinger
Journal:  Nature       Date:  2003-07-31       Impact factor: 49.962

7.  Specific packaging of nodaviral RNA2 requires the N-terminus of the capsid protein.

Authors:  D Marshall; A Schneemann
Journal:  Virology       Date:  2001-06-20       Impact factor: 3.616

8.  Flock house virus RNA polymerase is a transmembrane protein with amino-terminal sequences sufficient for mitochondrial localization and membrane insertion.

Authors:  David J Miller; Paul Ahlquist
Journal:  J Virol       Date:  2002-10       Impact factor: 5.103

9.  Engineered retargeting of viral RNA replication complexes to an alternative intracellular membrane.

Authors:  David J Miller; Michael D Schwartz; Billy T Dye; Paul Ahlquist
Journal:  J Virol       Date:  2003-11       Impact factor: 5.103

10.  Biogenesis of porin of the outer mitochondrial membrane involves an import pathway via receptors and the general import pore of the TOM complex.

Authors:  T Krimmer; D Rapaport; M T Ryan; C Meisinger; C K Kassenbrock; E Blachly-Dyson; M Forte; M G Douglas; W Neupert; F E Nargang; N Pfanner
Journal:  J Cell Biol       Date:  2001-01-22       Impact factor: 10.539

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  18 in total

Review 1.  Architecture and biogenesis of plus-strand RNA virus replication factories.

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2.  RNA virus replication depends on enrichment of phosphatidylethanolamine at replication sites in subcellular membranes.

Authors:  Kai Xu; Peter D Nagy
Journal:  Proc Natl Acad Sci U S A       Date:  2015-03-25       Impact factor: 11.205

Review 3.  Viruses and antiviral immunity in Drosophila.

Authors:  Jie Xu; Sara Cherry
Journal:  Dev Comp Immunol       Date:  2013-05-13       Impact factor: 3.636

4.  Characterization of a nodavirus replicase revealed a de novo initiation mechanism of RNA synthesis and terminal nucleotidyltransferase activity.

Authors:  Zhaowei Wang; Yang Qiu; Yongxiang Liu; Nan Qi; Jie Si; Xiaoling Xia; Di Wu; Yuanyang Hu; Xi Zhou
Journal:  J Biol Chem       Date:  2013-09-09       Impact factor: 5.157

5.  Tombusviruses upregulate phospholipid biosynthesis via interaction between p33 replication protein and yeast lipid sensor proteins during virus replication in yeast.

Authors:  Daniel Barajas; Kai Xu; Monika Sharma; Cheng-Yu Wu; Peter D Nagy
Journal:  Virology       Date:  2014-10-28       Impact factor: 3.616

6.  Intersection of the multivesicular body pathway and lipid homeostasis in RNA replication by a positive-strand RNA virus.

Authors:  Xiaofeng Wang; Arturo Diaz; Linhui Hao; Brandi Gancarz; Johan A den Boon; Paul Ahlquist
Journal:  J Virol       Date:  2011-03-23       Impact factor: 5.103

7.  Complementary transcriptomic, lipidomic, and targeted functional genetic analyses in cultured Drosophila cells highlight the role of glycerophospholipid metabolism in Flock House virus RNA replication.

Authors:  Kathryn M Castorena; Kenneth A Stapleford; David J Miller
Journal:  BMC Genomics       Date:  2010-03-17       Impact factor: 3.969

8.  The rubella virus capsid protein inhibits mitochondrial import.

Authors:  Carolina S Ilkow; Daniel Weckbecker; Woo Jung Cho; Stephan Meier; Martin D Beatch; Ing Swie Goping; Johannes M Herrmann; Tom C Hobman
Journal:  J Virol       Date:  2010-01       Impact factor: 5.103

9.  A targeted analysis of cellular chaperones reveals contrasting roles for heat shock protein 70 in flock house virus RNA replication.

Authors:  Spencer A Weeks; William P Shield; Chandan Sahi; Elizabeth A Craig; Sabine Rospert; David J Miller
Journal:  J Virol       Date:  2010-01       Impact factor: 5.103

10.  Two membrane-associated regions within the Nodamura virus RNA-dependent RNA polymerase are critical for both mitochondrial localization and RNA replication.

Authors:  Vincent U Gant; Stephanie Moreno; Armando Varela-Ramirez; Kyle L Johnson
Journal:  J Virol       Date:  2014-04-02       Impact factor: 5.103

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