首页> 美国卫生研究院文献>Journal of Virology >Activation of Membrane Fusion by Murine Leukemia Viruses Is Controlled in cis or in trans by Interactions between the Receptor-Binding Domain and a Conserved Disulfide Loop of the Carboxy Terminus of the Surface Glycoprotein
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Activation of Membrane Fusion by Murine Leukemia Viruses Is Controlled in cis or in trans by Interactions between the Receptor-Binding Domain and a Conserved Disulfide Loop of the Carboxy Terminus of the Surface Glycoprotein

机译:鼠白血病病毒对膜融合的激活受受体结合域和表面糖蛋白羧基末端保守的二硫环相互作用的顺式或反式控制

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摘要

Cell entry of retroviruses is initiated by the recognition of cellular receptors and the subsequent membrane fusion between viral and cellular membranes. These two steps are mediated by the surface (SU) and transmembrane (TM) subunits of the retroviral envelope glycoprotein (Env), respectively. Determinants regulating membrane fusion have been described throughout SU and TM, but the processes coupling receptor recognition to fusion are still elusive. Here we establish that a critical interaction is formed between the receptor-binding domain (RBD) and the major disulfide loop of the carboxy-terminal domain (C domain) of the murine leukemia virus SU. Receptor binding causes an alteration of this interaction and, in turn, promotes further events of Env fusion activation. We characterize mutations which, by lowering this interaction and reducing the compatibility between the RBD and C domains of Env glycoprotein chimeras, affect both Env fusogenicity and sensitivity to receptor interference. Additionally, we demonstrate that suboptimal interactions in such mutant Env proteins can be compensated in trans by soluble RBDs in a manner that depends on their compatibility with the C domain. Our results therefore indicate that RBD/C domain interactions may occur in cis, via the proper RBD of the viral Env itself, or in trans, via a distinct RBD expressed by virion-free Env glycoproteins expressed endogenously by the infected cells or provided by neighboring Env trimers.
机译:逆转录病毒的细胞进入是通过识别细胞受体以及随后的病毒膜和细胞膜之间的膜融合开始的。这两个步骤分别由逆转录病毒包膜糖蛋白(Env)的表面(SU)和跨膜(TM)亚基介导。 SU和TM中已描述了调节膜融合的决定因素,但将受体识别与融合相结合的过程仍然难以捉摸。在这里,我们确定鼠白血病病毒SU的受体结合域(RBD)和羧基末端域(C域)的主要二硫键环之间形成了关键的相互作用。受体结合引起这种相互作用的改变,进而促进Env融合激活的进一步事件。我们表征突变,通过降低这种相互作用并减少Env糖蛋白嵌合体的RBD和C结构域之间的兼容性,影响Env融合性和对受体干扰的敏感性。此外,我们证明了这种突变Env蛋白中的次优相互作用可以通过可溶性RBD进行反式补偿,具体取决于它们与C结构域的相容性。因此,我们的结果表明,RBD / C结构域相互作用可能通过病毒Env本身的适当RBD顺式发生,也可能通过被感染细胞内源性表达或由邻近细胞提供的无病毒体Env糖蛋白表达的独特RBD反式发生环保三聚体。

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