The Conserved Tyr176/Leu177 Motif in the α-Helix 9 of the Feline Immunodeficiency Virus Capsid Protein Is Critical for Gag Particle Assembly
Autor: | César A. Ovejero, Silvia A. González, José L. Affranchino |
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Rok vydání: | 2019 |
Předmět: |
0301 basic medicine
Protein Conformation alpha-Helical Feline immunodeficiency virus viruses Amino Acid Motifs lcsh:QR1-502 Gene Products gag Immunodeficiency Virus Feline lcsh:Microbiology Virus Article Equine infectious anemia 03 medical and health sciences retrovirus infectivity Capsid Gag polyprotein Virology Chlorocebus aethiops Animals retrovirus assembly chemistry.chemical_classification Infectivity 030102 biochemistry & molecular biology biology Virus Assembly Virion biochemical phenomena metabolism and nutrition biology.organism_classification In vitro capsid protein Amino acid Cell biology 030104 developmental biology Infectious Diseases chemistry Viral replication COS Cells Mutation HIV-1 Capsid Proteins feline immunodeficiency virus Infectious Anemia Virus Equine |
Zdroj: | Viruses Volume 11 Issue 9 Viruses, Vol 11, Iss 9, p 816 (2019) |
ISSN: | 1999-4915 |
Popis: | The capsid domain (CA) of the lentiviral Gag polyproteins has two distinct roles during virion morphogenesis. As a domain of Gag, it mediates the Gag&ndash Gag interactions that drive immature particle assembly, whereas as a mature protein, it self-assembles into the conical core of the mature virion. Lentiviral CA proteins are composed of an N-terminal region with seven &alpha helices and a C-terminal domain (CA-CTD) formed by four &alpha helices. Structural studies performed in HIV-1 indicate that the CA-CTD helix 9 establishes homodimeric interactions that contribute to the formation of the hexameric Gag lattice in immature virions. Interestingly, the mature CA core also shows inter-hexameric associations involving helix 9 residues W184 and M185. The CA proteins of feline immunodeficiency virus (FIV) and equine infectious anemia virus (EIAV) exhibit, at equivalent positions in helix 9, the motifs Y176/L177 and L169/F170, respectively. In this paper, we investigated the relevance of the Y176/L177 motif for FIV assembly by introducing a series of amino acid substitutions into this sequence and studying their effect on in vivo and in vitro Gag assembly, CA oligomerization, mature virion production, and viral infectivity. Our results demonstrate that the Y176/L177 motif in FIV CA helix 9 is essential for Gag assembly and CA oligomerization. Notably, mutations converting the FIV CA Y176/L177 motif into the HIV-1 WM and EIAV FL sequences allow substantial particle production and viral replication in feline cells. |
Databáze: | OpenAIRE |
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