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离子自互补肽的构象行为

Conformational behavior of ionic self-complementary peptides.

作者信息

Altman M, Lee P, Rich A, Zhang S

机构信息

Center for Biomedical Engineering & Department of Biology, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Protein Sci. 2000 Jun;9(6):1095-105. doi: 10.1110/ps.9.6.1095.

Abstract

Several de novo designed ionic peptides that are able to undergo conformational change under the influence of temperature and pH were studied. These peptides have two distinct surfaces with regular repeats of alternating hydrophilic and hydrophobic side chains. This permits extensive ionic and hydrophobic interactions resulting in the formation of stable beta-sheet assemblies. The other defining characteristic of this type of peptide is a cluster of negatively charged aspartic or glutamic acid residues located toward the N-terminus and positively charged arginine or lysine residues located toward the C-terminus. This arrangement of charge balances the alpha-helical dipole moment (C --> N), resulting in a strong tendency to form stable alpha-helices as well. Therefore, these peptides can form both stable alpha-helices and beta-sheets. They are also able to undergo abrupt structural transformations between these structures induced by temperature and pH changes. The amino acid sequence of these peptides permits both stable beta-sheet and alpha-helix formation, resulting in a balance between these two forms as governed by the environment. Some segments in proteins may also undergo conformational changes in response to environmental changes. Analyzing the plasticity and dynamics of this type of peptide may provide insight into amyloid formation. Since these peptides have dynamic secondary structure, they will serve to refine our general understanding of protein structure.

摘要

研究了几种能够在温度和pH值影响下发生构象变化的从头设计的离子肽。这些肽有两个不同的表面,亲水和疏水侧链交替有规律地重复。这允许广泛的离子和疏水相互作用,从而形成稳定的β-折叠组装体。这类肽的另一个决定性特征是,在N端有一簇带负电荷的天冬氨酸或谷氨酸残基,在C端有带正电荷的精氨酸或赖氨酸残基。这种电荷排列平衡了α-螺旋偶极矩(C→N),也导致了形成稳定α-螺旋的强烈倾向。因此,这些肽既能形成稳定的α-螺旋,也能形成β-折叠。它们还能够在温度和pH值变化引起的这些结构之间发生突然的结构转变。这些肽的氨基酸序列允许稳定的β-折叠和α-螺旋形成,导致这两种形式在环境的控制下达到平衡。蛋白质中的一些片段也可能响应环境变化而发生构象变化。分析这类肽的可塑性和动力学可能有助于深入了解淀粉样蛋白的形成。由于这些肽具有动态二级结构,它们将有助于完善我们对蛋白质结构的总体认识。

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