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补体受体 3 介导 HIV-1 穿过完整的宫颈上皮细胞屏障的易位:女性中 HIV 传播的新见解。

Complement Receptor 3 Mediates HIV-1 Transcytosis across an Intact Cervical Epithelial Cell Barrier: New Insight into HIV Transmission in Women.

机构信息

Institute for Glycomics, Griffith Universitygrid.1022.1, Southport, Queensland, Australia.

Center for Microbial Pathogenesis, The Abigail Wexner Research Institute at Nationwide Children's Hospital, Columbus, Ohio, USA.

出版信息

mBio. 2022 Feb 22;13(1):e0217721. doi: 10.1128/mbio.02177-21. Epub 2022 Jan 11.

Abstract

Transmission of HIV across the mucosal surface of the female reproductive tract to engage subepithelial CD4-positive T cells is not fully understood. Cervical epithelial cells express complement receptor 3 (CR3) (integrin αβ or CD11b/CD18). In women, the bacterium Neisseria gonorrhoeae uses CR3 to invade the cervical epithelia to cause cervicitis. We hypothesized that HIV may also use CR3 to transcytose across the cervical epithelia. Here, we show that HIV-1 strains bound with high affinity to recombinant CR3 in biophysical assays. HIV-1 bound CR3 via the I-domain region of the CR3 alpha subunit, CD11b, and binding was dependent on HIV-1 N-linked glycans. Mannosylated glycans on the HIV surface were a high-affinity ligand for the I-domain. Man5 pentasaccharide, representative of HIV N-glycans, could compete with HIV-1 for CR3 binding. Using cellular assays, we show that HIV bound to CHO cells by a CR3-dependent mechanism. Antibodies to the CR3 I-domain or to the HIV-1 envelope glycoprotein blocked the binding of HIV-1 to primary human cervical epithelial (Pex) cells, indicating that CR3 was necessary and sufficient for HIV-1 adherence to Pex cells. Using Pex cells in a Transwell model system, we show that, following transcytosis across an intact Pex cell monolayer, HIV-1 is able to infect TZM-bl reporter cells. Targeting the HIV-CR3 interaction using antibodies, mannose-binding lectins, or CR3-binding small-molecule drugs blocked HIV transcytosis. These studies indicate that CR3/Pex may constitute an efficient pathway for HIV-1 transmission in women and also demonstrate strategies that may prevent transmission via this pathway. In women, the lower female reproductive tract is the primary site for HIV infection. How HIV traverses the epithelium to infect CD4 T cells in the submucosa is ill-defined. Cervical epithelial cells have a protein called CR3 on their surface. We show that HIV-1 binds to CR3 with high affinity and that this interaction is necessary and sufficient for HIV adherence to, and transcytosis across, polarized, human primary cervical epithelial cells. This suggests a unique role for CR3 on epithelial cells in dually facilitating HIV-1 attachment and entry. The HIV-CR3 interaction may constitute an efficient pathway for HIV delivery to subepithelial lymphocytes following virus transmission across an intact cervical epithelial barrier. Strategies with potential to prevent transmission via this pathway are presented.

摘要

HIV 通过女性生殖道黏膜表面传播,与黏膜下的 CD4 阳性 T 细胞结合,这一过程目前尚未完全阐明。宫颈上皮细胞表达补体受体 3(CR3)(整合素αβ或 CD11b/CD18)。在女性中,淋病奈瑟菌利用 CR3 侵入宫颈上皮细胞,引起宫颈炎。我们假设 HIV 也可能利用 CR3 穿过宫颈上皮细胞。在这里,我们表明 HIV-1 株在生物物理测定中与重组 CR3 具有高亲和力结合。HIV-1 通过 CR3α亚基的 I 结构域区域、CD11b 与 CR3 结合,并且结合取决于 HIV-1 的 N 连接糖基化。HIV 表面的甘露糖化聚糖是 I 结构域的高亲和力配体。代表 HIV N-糖基的 Man5 五糖可以与 HIV-1 竞争 CR3 结合。使用细胞测定,我们表明 HIV 通过 CR3 依赖机制与 CHO 细胞结合。针对 CR3 I 结构域或 HIV-1 包膜糖蛋白的抗体可阻断 HIV-1 与原代人宫颈上皮(Pex)细胞的结合,表明 CR3 是 HIV-1 与 Pex 细胞结合所必需且充分的。使用 Pex 细胞在 Transwell 模型系统中,我们表明,在完整的 Pex 细胞单层上穿越胞吞作用后,HIV-1 能够感染 TZM-bl 报告细胞。使用抗体、甘露糖结合凝集素或 CR3 结合小分子药物靶向 HIV-CR3 相互作用可阻断 HIV 穿越。这些研究表明,CR3/Pex 可能构成女性中 HIV-1 传播的有效途径,并且还证明了可通过该途径预防传播的策略。 在女性中,下生殖道是 HIV 感染的主要部位。HIV 如何穿过上皮细胞感染黏膜下的 CD4 T 细胞尚不清楚。宫颈上皮细胞表面有一种叫做 CR3 的蛋白质。我们表明 HIV-1 与 CR3 具有高亲和力结合,并且这种相互作用对于 HIV 与极化的人原代宫颈上皮细胞的粘附和穿越是必需且充分的。这表明 CR3 在上皮细胞中具有独特的作用,既能促进 HIV-1 的附着,又能促进其进入。HIV-CR3 相互作用可能构成 HIV 穿过完整的宫颈上皮屏障后传递到黏膜下淋巴细胞的有效途径。提出了具有通过该途径预防传播潜力的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfa2/8749410/5dbb144f18a5/mbio.02177-21-f001.jpg

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