Next Article in Journal
Collaborative Referral Model to Achieve Hepatitis C Micro-Elimination in Methadone Maintenance Treatment Patients during the COVID-19 Pandemic
Next Article in Special Issue
Development of a Mouse-Adapted Reporter SARS-CoV-2 as a Tool for Two-Photon In Vivo Imaging
Previous Article in Journal
Beyond Amyloid Fibers: Accumulation, Biological Relevance, and Regulation of Higher-Order Prion Architectures
Previous Article in Special Issue
Generation of Reporter-Expressing New World Arenaviruses: A Systematic Comparison
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

SERINC5-Mediated Restriction of HIV-1 Infectivity Correlates with Resistance to Cholesterol Extraction but Not with Lipid Order of Viral Membrane

1
Department of Pediatrics, Division of Infectious Diseases, School of Medicine, Emory University, Atlanta, GA 30322, USA
2
Children’s Healthcare of Atlanta, Atlanta, GA 30322, USA
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Viruses 2022, 14(8), 1636; https://doi.org/10.3390/v14081636
Submission received: 13 May 2022 / Revised: 19 July 2022 / Accepted: 23 July 2022 / Published: 27 July 2022

Abstract

Serine incorporator 5 (SER5) is a protein that upon incorporation into virions inhibits HIV-1 infectivity by interfering with the ability of the Env glycoprotein to promote viral fusion. The mechanisms by which SER5 antagonizes HIV-1 fusion are not well understood. A recent study of SER5’s structure revealed a lipid-binding pocket, suggesting the ability to sequester lipids. This finding, along with the well-documented modulation of HIV-1 infectivity by viral lipids, especially cholesterol, prompted our examination of SER5′s effect on the general lipid order of the HIV-1 membrane. Pseudoviruses bearing the SER5-sensitive HXB2-Env and containing SER5 or SER2, a control protein that lacks antiviral activity, were analyzed using two distinct lipid-order probes. We show that SER5 incorporation does not noticeably affect the lipid order of pseudoviruses. Although viral cholesterol extraction reduces HIV-1 infectivity, SER5+ viruses are less sensitive to cholesterol extraction than the control samples. In contrast, the virus’ sensitivity to cholesterol oxidation was not affected by SER5 incorporation. The hydrolytic release of sphingomyelin-sequestered cholesterol had a minimal impact on the apparent resistance to cholesterol extraction. Based on these results, we propose that a subpopulation of more stable Env glycoproteins responsible for the residual infectivity of SER5+ viruses is less sensitive to the cholesterol content of the viral membrane.
Keywords: restriction factors; SERINC; HIV-1; lipid order; cholesterol; viral fusion; envelope protein stability; virus imaging; cyclodextrin restriction factors; SERINC; HIV-1; lipid order; cholesterol; viral fusion; envelope protein stability; virus imaging; cyclodextrin

Share and Cite

MDPI and ACS Style

Raghunath, G.; Chen, Y.-C.; Marin, M.; Wu, H.; Melikyan, G.B. SERINC5-Mediated Restriction of HIV-1 Infectivity Correlates with Resistance to Cholesterol Extraction but Not with Lipid Order of Viral Membrane. Viruses 2022, 14, 1636. https://doi.org/10.3390/v14081636

AMA Style

Raghunath G, Chen Y-C, Marin M, Wu H, Melikyan GB. SERINC5-Mediated Restriction of HIV-1 Infectivity Correlates with Resistance to Cholesterol Extraction but Not with Lipid Order of Viral Membrane. Viruses. 2022; 14(8):1636. https://doi.org/10.3390/v14081636

Chicago/Turabian Style

Raghunath, Gokul, Yen-Cheng Chen, Mariana Marin, Hui Wu, and Gregory B. Melikyan. 2022. "SERINC5-Mediated Restriction of HIV-1 Infectivity Correlates with Resistance to Cholesterol Extraction but Not with Lipid Order of Viral Membrane" Viruses 14, no. 8: 1636. https://doi.org/10.3390/v14081636

APA Style

Raghunath, G., Chen, Y.-C., Marin, M., Wu, H., & Melikyan, G. B. (2022). SERINC5-Mediated Restriction of HIV-1 Infectivity Correlates with Resistance to Cholesterol Extraction but Not with Lipid Order of Viral Membrane. Viruses, 14(8), 1636. https://doi.org/10.3390/v14081636

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop