Department of Pediatrics, Division of Infectious Diseases, School of Medicine, Emory University, Atlanta, GA 30322, USA.
Children's Healthcare of Atlanta, Atlanta, GA 30322, USA.
Viruses. 2022 Jul 27;14(8):1636. doi: 10.3390/v14081636.
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.
丝氨酸掺入物 5(SER5)是一种蛋白质,它在病毒粒子中掺入时通过干扰Env 糖蛋白促进病毒融合的能力来抑制 HIV-1 的感染性。SER5 拮抗 HIV-1 融合的机制尚未完全理解。最近对 SER5 结构的研究揭示了一个脂质结合口袋,表明其具有隔离脂质的能力。这一发现,以及病毒脂质(尤其是胆固醇)对 HIV-1 感染性的充分记录的调节,促使我们检查 SER5 对 HIV-1 膜中一般脂质有序性的影响。使用两种不同的脂质有序性探针分析了携带 SER5 敏感的 HXB2-Env 的假病毒,其中包含 SER5 或 SER2,一种缺乏抗病毒活性的对照蛋白。我们表明,SER5 的掺入不会明显影响假病毒的脂质有序性。尽管病毒胆固醇提取会降低 HIV-1 的感染性,但 SER5+病毒对胆固醇提取的敏感性低于对照样品。相比之下,SER5 掺入不会影响病毒对胆固醇氧化的敏感性。鞘磷脂隔离的胆固醇的水解释放对明显抵抗胆固醇提取的影响最小。基于这些结果,我们提出一种假说,即负责 SER5+病毒残留感染性的更稳定的 Env 糖蛋白亚群对病毒膜中的胆固醇含量不敏感。