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鹌鹑富含半胱氨酸和甘氨酸的蛋白质CRP2氨基末端LIM结构域的结构与模块内动力学

Structure and intramodular dynamics of the amino-terminal LIM domain from quail cysteine- and glycine-rich protein CRP2.

作者信息

Kontaxis G, Konrat R, Kräutler B, Weiskirchen R, Bister K

机构信息

Institutes of Organic Chemistry and Biochemistry, University of Innsbruck, Austria.

出版信息

Biochemistry. 1998 May 19;37(20):7127-34. doi: 10.1021/bi973055v.

Abstract

Members of the cysteine and glycine-rich protein (CRP) family (CRP1, CRP2, and CRP3) contain two zinc-binding LIM domains, LIM1 and LIM2, and are implicated in diverse cellular processes linked to differentiation, growth control and pathogenesis. The solution structure of an 81-amino acid recombinant peptide encompassing the amino-terminal LIM1 domain of quail CRP2 has been determined by 2D and 3D homo- and heteronuclear NMR spectroscopy. The LIM1 domain consists of two zinc binding sites of the CCHC and the CCCC type, respectively, which both contain two orthogonally arranged antiparallel beta-sheets and which are packed together by a hydrophobic core composed of residues from the zinc finger loop regions. The CCCC zinc finger is followed by a short alpha-helical stretch. The structural analysis revealed that the global fold of LIM1 closely resembles the recently determined solution structures of the carboxyl-terminal LIM2 domains of quail CRP2 and chicken CRP1, and that LIM1 and LIM2 are independently folded structural and presumably functional domains of CRP proteins. To explore the dynamical properties of CRP proteins, we have used 15N relaxation values (T1, T2, and nuclear Overhauser effect (NOE) to describe the dynamical behavior of a LIM domain. A model-free analysis revealed local variations in mobility along the backbone of the quail CRP2 LIM1 motif. Slow motions are evident in turn regions located between the various antiparallel beta-sheets or between their strands. By use of an extended motional model, fast backbone motions were detected for backbone amide NH groups of hydrophobic residues located in the core region of the LIM1 domain. These findings point to a flexible hydrophobic core in the LIM1 domain allowing residual relative mobility of the two zinc fingers, which might be important to optimize the LIM1 interface for interaction with its physiological target molecule(s) and to compensate enthalpically for the entropy loss upon binding.

摘要

富含半胱氨酸和甘氨酸的蛋白质(CRP)家族成员(CRP1、CRP2和CRP3)包含两个锌结合LIM结构域,即LIM1和LIM2,并参与与分化、生长控制和发病机制相关的多种细胞过程。通过二维和三维同核及异核核磁共振光谱法,已确定了包含鹌鹑CRP2氨基末端LIM1结构域的81个氨基酸重组肽的溶液结构。LIM1结构域分别由CCHC型和CCCC型的两个锌结合位点组成,这两个位点均包含两个正交排列的反平行β折叠片层,并且通过由锌指环区域的残基组成的疏水核心堆积在一起。CCCC锌指后面是一段短的α螺旋延伸。结构分析表明,LIM1的整体折叠与最近确定的鹌鹑CRP2和鸡CRP1羧基末端LIM2结构域的溶液结构非常相似,并且LIM1和LIM2是CRP蛋白独立折叠的结构域,可能也是功能结构域。为了探究CRP蛋白的动力学特性,我们使用了15N弛豫值(T1、T2和核Overhauser效应(NOE))来描述LIM结构域的动力学行为。无模型分析揭示了鹌鹑CRP2 LIM1基序主链上移动性的局部变化。在位于各个反平行β折叠片层之间或其链之间的转角区域,慢速运动很明显。通过使用扩展的运动模型,在LIM1结构域核心区域的疏水残基的主链酰胺NH基团中检测到了快速的主链运动。这些发现表明LIM1结构域中有一个灵活的疏水核心,允许两个锌指有残余的相对移动性,这对于优化LIM1与其生理靶分子相互作用的界面以及在结合时焓补偿熵损失可能很重要。

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