逆转录病毒衍生的人类蛋白的受体识别和抗病毒机制。

Receptor-recognition and antiviral mechanisms of retrovirus-derived human proteins.

机构信息

Fundamental Microbiology and Pathogenicity Unit, CNRS, Université de Bordeaux, IECB, Bordeaux, France.

Biozentrum, University of Basel, Basel, Switzerland.

出版信息

Nat Struct Mol Biol. 2024 Sep;31(9):1368-1376. doi: 10.1038/s41594-024-01295-6. Epub 2024 Apr 26.

Abstract

Human syncytin-1 and suppressyn are cellular proteins of retroviral origin involved in cell-cell fusion events to establish the maternal-fetal interface in the placenta. In cell culture, they restrict infections from members of the largest interference group of vertebrate retroviruses, and are regarded as host immunity factors expressed during development. At the core of the syncytin-1 and suppressyn functions are poorly understood mechanisms to recognize a common cellular receptor, the membrane transporter ASCT2. Here, we present cryo-electron microscopy structures of human ASCT2 in complexes with the receptor-binding domains of syncytin-1 and suppressyn. Despite their evolutionary divergence, the two placental proteins occupy similar positions in ASCT2, and are stabilized by the formation of a hybrid β-sheet or 'clamp' with the receptor. Structural predictions of the receptor-binding domains of extant retroviruses indicate overlapping binding interfaces and clamping sites with ASCT2, revealing a competition mechanism between the placental proteins and the retroviruses. Our work uncovers a common ASCT2 recognition mechanism by a large group of endogenous and disease-causing retroviruses, and provides high-resolution views on how placental human proteins exert morphological and immunological functions.

摘要

人类合胞素-1 和抑制素是源自逆转录病毒的细胞蛋白,参与胎盘内母胎界面的细胞-细胞融合事件。在细胞培养中,它们限制了最大的脊椎动物逆转录病毒干扰群成员的感染,被认为是发育过程中表达的宿主免疫因子。合胞素-1 和抑制素功能的核心是识别共同细胞受体 ASCT2 的机制理解不足。在这里,我们展示了人类 ASCT2 与合胞素-1 和抑制素的受体结合域复合物的冷冻电子显微镜结构。尽管它们在进化上存在差异,但这两种胎盘蛋白在 ASCT2 中占据相似的位置,并通过与受体形成杂交 β 片层或“夹”而稳定。对现存逆转录病毒的受体结合域的结构预测表明,它们与 ASCT2 具有重叠的结合界面和夹点,揭示了胎盘蛋白与逆转录病毒之间的竞争机制。我们的工作揭示了一大组内源性和致病逆转录病毒共有的 ASCT2 识别机制,并提供了关于胎盘人类蛋白如何发挥形态和免疫功能的高分辨率视图。

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