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来自包膜糖蛋白胞外域的埃博拉病毒膜融合亚基GP2的晶体结构。

Crystal structure of the Ebola virus membrane fusion subunit, GP2, from the envelope glycoprotein ectodomain.

作者信息

Weissenhorn W, Carfí A, Lee K H, Skehel J J, Wiley D C

机构信息

Laboratory of Molecular Medicine, Howard Hughes Medical Institute, Children's Hospital, Boston, Massachusetts 02115, USA.

出版信息

Mol Cell. 1998 Nov;2(5):605-16. doi: 10.1016/s1097-2765(00)80159-8.

Abstract

We have determined the structure of GP2 from the Ebola virus membrane fusion glycoprotein by X-ray crystallography. The molecule contains a central triple-stranded coiled coil followed by a disulfide-bonded loop homologous to an immunosuppressive sequence in retroviral glycoproteins, which reverses the chain direction and connects to an alpha helix packed antiparallel to the core helices. The structure suggests that fusion peptides near the N termini form disulfide-bonded loops at one end of the molecule and that the C-terminal membrane anchors are at the same end. In this conformation, GP2 could both bridge two membranes and facilitate their apposition to initiate membrane fusion. We also find a heptad irregularity like that in low-pH-induced influenza HA2 and a solvent ion trapped in a coiled coil like that in retroviral TMs.

摘要

我们通过X射线晶体学确定了埃博拉病毒膜融合糖蛋白GP2的结构。该分子包含一个中央三链卷曲螺旋,其后是一个与逆转录病毒糖蛋白中免疫抑制序列同源的二硫键连接环,该环逆转链的方向并连接到与核心螺旋反平行堆积的α螺旋。该结构表明,靠近N端的融合肽在分子一端形成二硫键连接环,而C端膜锚定在同一端。在这种构象中,GP2既能桥接两个膜,又能促进它们的并置以启动膜融合。我们还发现了一种类似于低pH诱导的流感HA2中的七肽不规则性,以及一种像逆转录病毒跨膜蛋白中那样被困在卷曲螺旋中的溶剂离子。

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