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一种具有可逆pH诱导寡聚化开关的从头设计的卷曲螺旋肽。

A De Novo Designed Coiled-Coil Peptide with a Reversible pH-Induced Oligomerization Switch.

作者信息

Lizatović Robert, Aurelius Oskar, Stenström Olof, Drakenberg Torbjörn, Akke Mikael, Logan Derek T, André Ingemar

机构信息

Department of Biochemistry and Structural Biology, Center for Molecular Protein Science, Lund University, PO Box 124, 221 00 Lund, Sweden.

Department of Biophysical Chemistry, Center for Molecular Protein Science, Lund University, PO Box 124, 221 00 Lund, Sweden.

出版信息

Structure. 2016 Jun 7;24(6):946-55. doi: 10.1016/j.str.2016.03.027. Epub 2016 May 5.

Abstract

Protein conformational switches have many useful applications but are difficult to design rationally. Here we demonstrate how the isoenergetic energy landscape of higher-order coiled coils can enable the formation of an oligomerization switch by insertion of a single destabilizing element into an otherwise stable computationally designed scaffold. We describe a de novo designed peptide that was discovered to switch between a parallel symmetric pentamer at pH 8 and a trimer of antiparallel dimers at pH 6. The transition between pentamer and hexamer is caused by changes in the protonation states of glutamatic acid residues with highly upshifted pKa values in both oligomer forms. The drastic conformational change coupled with the narrow pH range makes the peptide sequence an attractive candidate for introduction of pH sensing into other proteins. The results highlight the remarkable ability of simple-α helices to self-assemble into a vast range of structural states.

摘要

蛋白质构象开关有许多有用的应用,但难以进行合理设计。在此,我们展示了高阶卷曲螺旋的等能能量景观如何通过在原本稳定的计算设计支架中插入单个不稳定元件来实现寡聚化开关的形成。我们描述了一种从头设计的肽,它在pH 8时会在平行对称五聚体和pH 6时的反平行二聚体三聚体之间切换。五聚体和三聚体之间的转变是由两种寡聚体形式中具有高度上移pKa值的谷氨酸残基质子化状态的变化引起的。剧烈的构象变化与狭窄的pH范围相结合,使得该肽序列成为将pH传感引入其他蛋白质的有吸引力的候选者。结果突出了简单α螺旋自组装成广泛结构状态的显著能力。

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