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Structural basis for membrane anchoring and fusion regulation of the herpes simplex virus fusogen gB

机译:膜锚定的结构依据及单纯疱疹病毒致致致致孔素GB的融合调控

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摘要

Viral fusogens merge viral and cell membranes during cell penetration. Their ectodomains drive fusion by undergoing large-scale refolding, but little is known about the functionally important regions located within or near the membrane. Here we report the crystal structure of full-length glycoprotein B (gB), the fusogen from herpes simplex virus, complemented by electron spin resonance measurements. The membrane-proximal (MPR), transmembrane (TMD), and cytoplasmic (CTD) domains form a uniquely folded trimeric pedestal beneath the ectodomain, which balances dynamic flexibility with extensive, stabilizing membrane interactions. The postfusion conformation of the ectodomain suggests that the CTD likewise adopted the postfusion form. However, hyperfusogenic mutations, which destabilize the prefusion state of gB, target key interfaces and structural motifs that reinforce the observed CTD structure. Thus, a similar CTD structure must stabilize gB in its prefusion state. Our data suggest a model for how this dynamic, membrane-dependent 'clamp' controls the fusogenic refolding of gB.
机译:病毒Fusogens在细胞渗透过程中合并病毒和细胞膜。通过经历大规模的重折叠来驱动融合,但对于位于膜内或附近的功能重要区域几乎是知之甚少。在这里,我们报告了全长糖蛋白B(GB)的晶体结构,由疱疹病毒的素原素,由电子自旋共振测量互补。膜 - 近端(MPR),跨膜(TMD)和细胞质(CTD)结构域在外接域下方形成唯一折叠的三聚体基座,其平衡具有广泛,稳定的膜相互作用的动态柔韧性。外胚瘤菌的复发构象表明,CTD同样采用了再繁殖形式。然而,破坏性突变突变,​​其破坏了GB的预熔点,靶键界面和增强观察到的CTD结构的结构基序。因此,类似的CTD结构必须稳定在其挖掘状态下的GB。我们的数据表明了一种模型,用于这种动态的膜上依赖性的“钳位”控制GB的致象性重折叠。

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