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大肠杆菌素E1通道形成肽的构象对酸性pH值和溶剂极性的依赖性。

Dependence of the conformation of a colicin E1 channel-forming peptide on acidic pH and solvent polarity.

作者信息

Brunden K R, Uratani Y, Cramer W A

出版信息

J Biol Chem. 1984 Jun 25;259(12):7682-7.

PMID:6736022
Abstract

The secondary structure content of the COOH-terminal tryptic peptide of colicin E1 has been measured by analysis of UV circular dichroism spectra as a function of pH in aqueous medium and in the presence of the nonionic detergents octyl glucoside and Triton X-100. The alpha-helical content of the peptide increased by approximately 10%, from 45-47% to 56-57%, in the presence of the nonionic detergents, but not in aqueous medium, as the pH was decreased from 4.5 to 3.5. This pH dependence of conformation is similar to that reported elsewhere for the in vitro activity and binding of this peptide. A smaller increase in helical content was observed for the peptide in aqueous medium or in Triton X-100 as the pH was decreased from 6.5 to 4.5. The letter change in helical content was not seen in octyl glucoside which was present at a detergent:peptide stoichiometry 100 times that of Triton. The mean residue ellipticity measured at 222 nm for peptide added to asolectin vesicles by a freeze-thaw treatment was slightly larger at pH 3.5, and substantially larger at pH 4.5, than found at these pH values in the detergent solutions. Changes in helical content at the former, but not the latter pH, could be attributed to peptide insertion. It appears that protonation of one or more acidic amino acid residues in the COOH-terminal region of the molecule causes a conformational change that can be attributed to an extra helical domain that is stabilized in a nonpolar environment. From the similar pH dependence of the conformational change and in vitro binding and activity, it is inferred that interaction of this domain with the membrane is essential for binding and insertion.

摘要

通过对紫外圆二色光谱进行分析,测定了在水介质中以及在非离子去污剂辛基葡糖苷和吐温X - 100存在的情况下,pH值变化时大肠杆菌素E1的羧基末端胰蛋白酶肽的二级结构含量。当pH值从4.5降至3.5时,在非离子去污剂存在下,该肽的α - 螺旋含量增加了约10%,从45 - 47%增至56 - 57%,但在水介质中未出现这种情况。这种构象的pH依赖性与该肽在体外活性和结合方面在其他地方报道的情况相似。当pH值从6.5降至4.5时,在水介质或吐温X - 100中观察到该肽的螺旋含量有较小增加。在去污剂与肽化学计量比为吐温100倍的辛基葡糖苷中未观察到螺旋含量的这种变化。通过冻融处理添加到大豆卵磷脂囊泡中的肽在222 nm处测得的平均残基椭圆率在pH 3.5时略大,在pH 4.5时比在去污剂溶液中这些pH值下测得的椭圆率大得多。在前者pH值下螺旋含量的变化可归因于肽的插入,而在后者pH值下则不然。似乎分子羧基末端区域中一个或多个酸性氨基酸残基的质子化会导致构象变化,这可归因于在非极性环境中稳定的额外螺旋结构域。从构象变化与体外结合及活性的相似pH依赖性推断,该结构域与膜的相互作用对于结合和插入至关重要。

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