M-Sec promotes the production of infectious HIV-1 virus through the exocyst complex
Mahmoud, R. M.; Hiyoshi, M.; Abdelnaser, R. A.; Monde, K.; Monde, N.; Koma, T.; Mizuno, H.; Habash, S. A.; Takahashi, N.; Maeda, Y.; Ono, A.; Suzu, S.
Show abstract
We have demonstrated that the cellular protein M-Sec promotes the transmission of human immunodeficiency virus type 1 (HIV-1). However, the underlying mechanism is not fully understood. Here, we report that M-Sec promotes the production of infectious HIV-1 virus. The major viral structural protein Gag distributed as many puncta in infected cells, which is one of the indicators of viral particle formation. The knockdown of M-Sec hindered the Gag puncta formation and co-localization of Gag with the viral envelope protein Env in cells, and reduced the amount of Env and infectivity of the produced virus. Consistent with these results, the over-expression of M-Sec induced the accumulation of Gag puncta, Gag/Env co-localization, and Env incorporation into virus and viral infectivity. M-Sec is known to bind phosphatidylinositol 4,5-bisphosphate (PIP2) and a small GTPase Ral, both of which were required for the M-Sec-mediated HIV-1 regulation. The exocyst complex, which is the downstream effector of Ral, was also required for the M-Sec-mediated HIV-1 regulation. Because PIP2, Ral and the exocyst complex are important for the M-Sec-mediated formation of the long plasma membrane protrusions, the present study suggests that M-Sec promotes HIV-1 transmission by acting on both cell structures and viral production through these overlapping components. Author SummaryDespite an effective anti-retroviral therapy, human immunodeficiency virus type 1 (HIV-1) persists in a fraction of infected cells, which is an obstacle to cure. HIV-1 exploits the cell-to-cell infection for its transmission, which is more efficient than infection by cell-free virus. Thus, it is important to fully understand the process of cell-to-cell infection towards the HIV-1 cure. We previously identified M-Sec as the cellular protein that potentiates the cell-to-cell infection of HIV-1. However, the underlying mechanism is not fully explained. In this study, we discovered that M-Sec promotes the production of infectious HIV-1 particles. Mechanistically, M-Sec affects the intracellular dynamics of the major viral structural protein Gag, which leads to an efficient incorporation of the viral envelope protein Env into viral particles. This activity of M-Sec depends on PIP2 (the phosphoinositide), Ral (the small GTPase), and the exocyst complex (the downstream effector of Ral), all of which are involved in vesicular trafficking. Thus, the present study identifies M-Sec and related molecular components as potential targets of anti-HIV-1 strategies.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- TRIM32 inhibits Venezuelan Equine Encephalitis Virus Infection by targeting a late step in viral entry 96%
- N6-methyladenosine modification of HIV-1 RNA evades RIG-I-mediated sensing to suppresses type-I interferon induction in monocytic cells 96%
- Inositol hexakisphosphate (IP6) and inositol pentakisphosphate (IP5) are required for viral particle release of retroviruses belonging to the primate lentivirus genus 95%
Similar papers in this journal
- Natural Occurring Non-Synonymous Single Nucleotide Polymorphisms in Integrase and RNase H Regulate Assembly and Autoprocessing of HIV-1 95%
- Influenza A virus circumvents the innate immune response through the sequestration of double-stranded RNA 95%
- Single-base m6A epitranscriptomics reveals novel HIV-1 host interaction targets in primary CD4+ T cells 94%
Similar papers in this journal
Similar papers in this journal
- Caspase-dependent cleavage of DDX21 suppresses host innate immunity 94%
- Conformation of HIV-1 Envelope governs rhesus CD4 usage and simian-human immunodeficiency virus replication 94%
- Activation of Store-Operated Calcium Entry and Mitochondiral Respiration by Enterovirus 71 Is Essential for Efficient Virus Replication 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.