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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Structural Investigation of the HIV-1 Envelope Glycoprotein gp160 Cleavage Site, 2: Relevance of an N-Terminal Helix
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Structural Investigation of the HIV-1 Envelope Glycoprotein gp160 Cleavage Site, 2: Relevance of an N-Terminal Helix

机译:HIV-1信封糖蛋白gp160切割位点的结构研究,2:N末端螺旋的相关性

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Proteolytic activation of the HIV-1 envelope glycoprotein gp160 is selectively performed by the proprotein convertase furin at the C-terminus of the sequence R508-E-K-R511 (site 1), in spite of the presence of another consensus sequence, Lys500-Ala-Lys-Arg503 (site 2). On the basis of the solution structural analysis of the synthetic peptide p498, spanning the gp160 sequence Pro498-Gly516, we previously suggested a possible role of an N-terminal helix in regulating the exposure and accessibility of the gp160 physiological cleavage site, enclosed in a loop. Here we report on the activity and conformation of the 23-residue peptide h-REKR, designed to exhibit a large N-terminal helix, followed by the gp160 native sequence, Arg508-Gly516. h-REKR is digested by furin with high efficiency, comparable to the full native p498. Circular dichroism analyses, in mixtures from pure water to 98% trifluoroethanol, outline a significant content of helical structure in the peptide conformation. The molecular model obtained from NMR data collected in trifluoroethanol/water, by means of DYANA and AMBER simulations, indeed has helical structure on a large N-terminal segment. Such a long helix does not seem to affect the loop conformation of the C-terminal site 1-containing sequence, which exhibits the same proton chemical shifts already observed for the full native p498.
机译:尽管存在另一个共有序列Lys500-Ala-,HIV-1包膜糖蛋白gp160的蛋白水解激活仍由原蛋白转化酶弗林蛋白酶在序列R508-EK-R511(位点1)的C端进行。 Lys-Arg503(位点2)。根据对跨越gp160序列Pro498-Gly516的合成肽p498的溶液结构分析,我们先前提出了N末端螺旋在调节gp160生理裂解位点的暴露和可及性方面的可能作用,该位点被封闭在循环。在这里,我们报道了23个残基的肽h-REKR的活性和构象,该肽设计成具有大的N末端螺旋,然后是gp160天然序列Arg508-Gly516。与完整的天然p498相当,h-REKR被弗林蛋白酶高效消化。从纯水到98%三氟乙醇的混合物中,圆二色性分析显示出肽构象中大量的螺旋结构。通过DYANA和AMBER模拟从三氟乙醇/水中收集的NMR数据获得的分子模型确实在大的N末端片段上具有螺旋结构。如此长的螺旋似乎并不影响含C末端位点1的序列的环构象,该序列表现出与完全天然p498相同的质子化学位移。

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