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血凝素前体切割位点的结构,流感致病性的决定因素及不稳定构象的起源

Structure of the hemagglutinin precursor cleavage site, a determinant of influenza pathogenicity and the origin of the labile conformation.

作者信息

Chen J, Lee K H, Steinhauer D A, Stevens D J, Skehel J J, Wiley D C

机构信息

Department of Molecular and Cellular Biology, Harvard University, Cambridge, Massachusetts 02138, USA.

出版信息

Cell. 1998 Oct 30;95(3):409-17. doi: 10.1016/s0092-8674(00)81771-7.

Abstract

The membrane fusion potential of influenza HA, like many viral membrane-fusion glycoproteins, is generated by proteolytic cleavage of a biosynthetic precursor. The three-dimensional structure of ectodomain of the precursor HA0 has been determined and compared with that of cleaved HA. The cleavage site is a prominent surface loop adjacent to a novel cavity; cleavage results in structural rearrangements in which the nonpolar amino acids near the new amino terminus bury ionizable residues in the cavity that are implicated in the low-pH-induced conformational change. Amino acid insertions at the cleavage site in HAs of virulent avian viruses and those of viruses isolated from the recent severe outbreak of influenza in humans in Hong Kong would extend this surface loop, facilitating intracellular cleavage.

摘要

与许多病毒膜融合糖蛋白一样,流感血凝素(HA)的膜融合潜力是由生物合成前体的蛋白水解切割产生的。前体HA0胞外域的三维结构已被确定,并与切割后的HA结构进行了比较。切割位点是一个与新腔相邻的突出表面环;切割导致结构重排,其中新氨基末端附近的非极性氨基酸将与低pH诱导的构象变化有关的可电离残基埋入腔内。在强毒禽流感病毒的HA以及从香港最近一次人类流感严重爆发中分离出的病毒的HA的切割位点处插入氨基酸,会使这个表面环延长,从而促进细胞内切割。

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