Department of Medicine, Icahn School of Medicine at Mount Sinaigrid.59734.3c, New York, New York, USA.
Division of Infectious Diseases, Department of Medicine, Icahn School of Medicine at Mount Sinaigrid.59734.3c, New York, New York, USA.
mBio. 2022 Apr 26;13(2):e0182521. doi: 10.1128/mbio.01825-21. Epub 2022 Mar 24.
The HIV Env glycoprotein is the surface glycoprotein responsible for viral entry into CD4 immune cells. During infection, Env also serves as a primary target for antibody responses, which are robust but unable to control virus replication. Immune evasion by HIV-1 Env appears to employ complex mechanisms to regulate what antigenic states are presented to the immune system. Immunodominant features appear to be distinct from epitopes that interfere with Env functions in mediating infection. Further, cell-cell transmission studies indicate that vulnerable conformational states are additionally hidden from recognition on infected cells, even though the presence of Env at the cell surface is required for viral infection through the virological synapse. Cell-cell infection studies support that Env on infected cells is presented in distinct conformations from that on virus particles. Here we review data regarding the regulation of conformational states of Env and assess how regulated sorting of Env within the infected cell may underlie mechanisms to distinguish Env on the surface of virus particles versus Env on the surface of infected cells. These mechanisms may allow infected cells to avoid opsonization, providing cell-to-cell infection by HIV with a selective advantage during evolution within an infected individual. Understanding how distinct Env conformations are presented on cells versus viruses may be essential to designing effective vaccine approaches and therapeutic strategies to clear infected cell reservoirs.
HIV Env 糖蛋白是负责病毒进入 CD4 免疫细胞的表面糖蛋白。在感染过程中,Env 也是抗体反应的主要靶标,抗体反应虽然强烈,但无法控制病毒复制。HIV-1 Env 的免疫逃避似乎采用了复杂的机制来调节向免疫系统呈现的抗原状态。免疫优势特征似乎与干扰 Env 介导感染功能的表位不同。此外,细胞间传播研究表明,即使感染细胞表面存在 Env 是通过病毒突触进行病毒感染所必需的,但受感染细胞上的脆弱构象状态仍然无法被识别。细胞间感染研究支持受感染细胞上的 Env 呈现出与病毒颗粒上不同的构象。在这里,我们回顾了有关 Env 构象状态调节的数据,并评估了感染细胞内 Env 的调节性分拣如何构成区分病毒颗粒表面的 Env 与受感染细胞表面的 Env 的机制。这些机制可能使受感染的细胞避免被调理,从而在个体感染过程中,HIV 的细胞间感染具有进化优势。了解细胞与病毒上呈现的不同 Env 构象对于设计有效的疫苗方法和清除受感染细胞库的治疗策略可能至关重要。