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PMID: 17609216 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

RNA and DNA binding properties of HIV-1 Vif protein: a fluorescence study.

The Journal of biological chemistry ·Vol. 282 ·No. 36 ·2007-09-07 ·Pages 26361-8

Bernacchi S, Henriet S, Dumas P, Paillart JC, Marquet R

Abstract

The HIV-1 viral infectivity factor (Vif) is a small basic protein essential for viral fitness and pathogenicity. Some "non-permissive" cell lines cannot sustain replication of Vif(-) HIV-1 virions. In these cells, Vif counteracts the natural antiretroviral activity of the DNA-editing enzymes APOBEC3G/3F. Moreover, Vif is packaged into viral particles through a strong interaction with genomic RNA in viral nucleoprotein complexes. To gain insights into determinants of this binding process, we performed the first characterization of Vif/nucleic acid interactions using Vif intrinsic fluorescence. We determined the affinity of Vif for RNA fragments corresponding to various regions of the HIV-1 genome. Our results demonstrated preferential and moderately cooperative binding for RNAs corresponding to the 5'-untranslated region of HIV-1 (5'-untranslated region) and gag (cooperativity parameter omega approximately 65-80, and K(d) = 45-55 nM). In addition, fluorescence spectroscopy allowed us to point out the TAR apical loop and a short region in gag as primary strong affinity binding sites (K(d) = 9.5-14 nM). Interestingly, beside its RNA binding properties, the Vif protein can also bind the corresponding DNA oligonucleotides and their complementary counterparts with an affinity similar to the one observed for the RNA sequences, while other DNA sequences displayed reduced affinity. Taken together, our results suggest that Vif binding to RNA and DNA offers several non-exclusive ways to counteract APOBEC3G/3F factors, in addition to the well documented Vif-induced degradation by the proteasome and to the Vif-mediated repression of translation of these antiviral factors.

MeSH Terms
5' Untranslated Regions/genetics,immunology,metabolism APOBEC-3G Deaminase Binding Sites/physiology Cytidine Deaminase Cytosine Deaminase/immunology,metabolism DNA, Viral/genetics,immunology,metabolism DNA-Binding Proteins/genetics,immunology,metabolism Gene Products, gag/genetics,immunology,metabolism Gene Products, vif/genetics,immunology,metabolism Genome, Viral/physiology HIV Long Terminal Repeat/physiology HIV-1/genetics,immunology,metabolism,pathogenicity Humans Immunity, Innate/physiology Nucleoside Deaminases/immunology,metabolism Oligonucleotides/genetics,immunology,metabolism Protein Binding/physiology Protein Biosynthesis/physiology RNA, Viral/genetics,immunology,metabolism RNA-Binding Proteins/genetics,immunology,metabolism Repressor Proteins/genetics,immunology,metabolism vif Gene Products, Human Immunodeficiency Virus
Chemicals
5' Untranslated Regions DNA, Viral DNA-Binding Proteins Gene Products, gag Gene Products, vif Oligonucleotides RNA, Viral RNA-Binding Proteins Repressor Proteins vif Gene Products, Human Immunodeficiency Virus Nucleoside Deaminases APOBEC3F protein, human Cytosine Deaminase APOBEC-3G Deaminase APOBEC3G protein, human Cytidine Deaminase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Bernacchi Serena
Architecture et Réactivité de l'ARN, Université Louis Pasteur de Strasbourg, CNRS, IBMC, 15 Rue René Descartes, 67084 Strasbourg, France.
Henriet Simon
Dumas Philippe
Paillart Jean-Christophe
Marquet Roland
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2007-09-07
Epub
2007-00-02
Pages
26361-8
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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