Rush University Medical Center, Department of Physiology and Biophysics, Chicago, Illinois, United States of America.
Department of Pediatrics, Emory University, Atlanta, Georgia, United States of America.
PLoS Pathog. 2021 Sep 7;17(9):e1009488. doi: 10.1371/journal.ppat.1009488. eCollection 2021 Sep.
Arenavirus entry into host cells occurs through a low pH-dependent fusion with late endosomes that is mediated by the viral glycoprotein complex (GPC). The mechanisms of GPC-mediated membrane fusion and of virus targeting to late endosomes are not well understood. To gain insights into arenavirus fusion, we examined cell-cell fusion induced by the Old World Lassa virus (LASV) GPC complex. LASV GPC-mediated cell fusion is more efficient and occurs at higher pH with target cells expressing human LAMP1 compared to cells lacking this cognate receptor. However, human LAMP1 is not absolutely required for cell-cell fusion or LASV entry. We found that GPC-induced fusion progresses through the same lipid intermediates as fusion mediated by other viral glycoproteins-a lipid curvature-sensitive intermediate upstream of hemifusion and a hemifusion intermediate downstream of acid-dependent steps that can be arrested in the cold. Importantly, GPC-mediated fusion and LASV pseudovirus entry are specifically augmented by an anionic lipid, bis(monoacylglycero)phosphate (BMP), which is highly enriched in late endosomes. This lipid also specifically promotes cell fusion mediated by Junin virus GPC, an unrelated New World arenavirus. We show that BMP promotes late steps of LASV fusion downstream of hemifusion-the formation and enlargement of fusion pores. The BMP-dependence of post-hemifusion stages of arenavirus fusion suggests that these viruses evolved to use this lipid as a cofactor to selectively fuse with late endosomes.
沙粒病毒属通过与晚期内体的低 pH 依赖性融合进入宿主细胞,该融合由病毒糖蛋白复合物(GPC)介导。GPC 介导的膜融合和病毒靶向晚期内体的机制尚不清楚。为了深入了解沙粒病毒的融合,我们研究了旧世界拉萨病毒(LASV)GPC 复合物诱导的细胞-细胞融合。与缺乏这种同源受体的细胞相比,LASV GPC 介导的细胞融合在表达人溶酶体相关膜蛋白 1(LAMP1)的靶细胞中更有效,且发生在更高的 pH 值。然而,人 LAMP1 并非细胞-细胞融合或 LASV 进入所必需的。我们发现,GPC 诱导的融合与其他病毒糖蛋白介导的融合一样,通过相同的脂质中间体进行-在半融合之前的脂质曲率敏感中间体和在酸依赖性步骤之后的半融合中间体,可以在低温下被阻止。重要的是,阴离子脂质双(单酰基甘油)磷酸酯(BMP)特异性地增强 GPC 介导的融合和 LASV 假病毒进入,BMP 在内体中高度富集。这种脂质还特异性地促进与 Junin 病毒 GPC 介导的细胞融合,Junin 病毒 GPC 是一种不相关的新世界沙粒病毒。我们表明,BMP 促进 LASV 融合在半融合之后的晚期步骤-融合孔的形成和扩大。BMP 对沙粒病毒融合的半融合后阶段的依赖性表明,这些病毒进化为利用这种脂质作为辅助因子,选择性地与晚期内体融合。