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钙调蛋白的蛋白质工程与核磁共振研究。

Protein engineering and NMR studies of calmodulin.

作者信息

Vogel H J, Zhang M

机构信息

Department of Biological Sciences, University of Calgary, Canada.

出版信息

Mol Cell Biochem. 1995 Aug-Sep;149-150:3-15. doi: 10.1007/BF01076558.

Abstract

The calcium regulatory protein calmodulin (CaM) plays a role as an on-off switch in the activation of many enzymes and proteins. CaM has a dumbbell shaped structure with two folded domains, which are connected by a flexible linker in solution. The calmodulin-binding domains of the target proteins are contained in 20 residue long amino acid sequences, that share no obvious amino acid sequence homology. In this contribution, we discuss the features of CaM, which allow it to be rather promiscuous, and bind effectively to all these distinct domains. In particular, we describe the role of the methionine-rich hydrophobic surfaces of the protein in providing a malleable and sticky surface for binding many hydrophobic peptides. The enzyme activation properties of various Met --> Leu mutants of CaM are discussed. In addition, the role of the flexible linker region that connects the two domains is also analyzed. Finally, we describe various NMR and spectroscopic experiments that aid in determining the CaM-bound structures of synthetic peptides containing various CaM-binding domains. All structures analyzed to date are alpha-helical when bound to CaM, and they interact with CaM only through amino acid sidechains. This form of protein-protein interaction is rather unique, and may contribute to CaM's capacity to bind effectively to such a wide range of distinct partners.

摘要

钙调节蛋白钙调素(CaM)在许多酶和蛋白质的激活过程中起着开关的作用。CaM具有哑铃状结构,有两个折叠结构域,在溶液中由一个柔性连接子相连。靶蛋白的钙调素结合结构域包含在20个残基长的氨基酸序列中,这些序列没有明显的氨基酸序列同源性。在本论文中,我们讨论了CaM的特性,这些特性使其具有相当的通用性,并能有效地结合所有这些不同的结构域。特别是,我们描述了该蛋白富含甲硫氨酸的疏水表面在为结合许多疏水肽提供可塑且粘性的表面方面所起的作用。讨论了CaM各种甲硫氨酸突变为亮氨酸的突变体的酶激活特性。此外,还分析了连接两个结构域的柔性连接子区域的作用。最后,我们描述了各种核磁共振和光谱实验,这些实验有助于确定含有各种CaM结合结构域的合成肽与CaM结合后的结构。迄今为止分析的所有结构在与CaM结合时都是α螺旋结构,并且它们仅通过氨基酸侧链与CaM相互作用。这种形式的蛋白质 - 蛋白质相互作用相当独特,可能有助于CaM有效地结合如此广泛的不同伴侣的能力。

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