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钙调蛋白介导的新型相互作用的结构分析:无钙条件下肽段的高亲和力结合。

Structural analysis of a novel interaction by calmodulin: high-affinity binding of a peptide in the absence of calcium.

作者信息

Urbauer J L, Short J H, Dow L K, Wand A J

机构信息

Department of Biochemistry, University of Illinois at Urbana-Champaign 61801, USA.

出版信息

Biochemistry. 1995 Jun 27;34(25):8099-109. doi: 10.1021/bi00025a016.

Abstract

The interaction of apocalmodulin (apoCaM) with a peptide (Neurop) based on the primary sequence of the calmodulin-binding domain of neuromodulin has been studied by nuclear magnetic resonance (NMR) methods. The NMR spectra of both apocalmodulin and its 1:1 complex with the Neurop peptide have been assigned by triple resonance and nuclear Overhauser effect-(NOE-) based strategies. ApoCaM displays many of the same basic structural features as calcium-saturated calmodulin. Analysis of observed chemical shifts and patterns of NOEs on the main chain indicates extensive and regular secondary structure throughout the N-terminal domain. In contrast, the helices of the C-terminal domain are somewhat irregular and are dynamically averaged. The EF-hands are intact in the N-terminal domain with the loops forming a short antiparallel beta sheet. Under low-salt conditions, two helix-loop-helix EF-hand motifs are present in the C-terminal domain of apoCaM but do not show interstrand NOEs. The spectral perturbations of apoCaM upon complexation with the Neurop peptide are relatively small with the larger chemical shift perturbations occurring in the C-terminal domain. The general secondary structure and tertiary organization appears to remain roughly the same as in free apoCaM. Stoichiometric titration of the apoCaM.Neurop complex with calcium indicates that the C-terminal domain EF-hands have a higher affinity for calcium than N-terminal domain EF-hands. Thus, this complex offers a unique opportunity to examine the structural and energetic consequences of calcium-dependent and calcium-independent binding of peptide to calmodulin.

摘要

通过核磁共振(NMR)方法研究了脱钙钙调蛋白(apoCaM)与基于神经调节蛋白钙调蛋白结合域一级序列的肽(Neurop)之间的相互作用。脱钙钙调蛋白及其与Neurop肽的1:1复合物的NMR谱已通过基于三重共振和核Overhauser效应(NOE)的策略进行了归属。ApoCaM表现出许多与钙饱和钙调蛋白相同的基本结构特征。对主链上观察到的化学位移和NOE模式的分析表明,整个N端结构域存在广泛且规则的二级结构。相比之下,C端结构域的螺旋有些不规则且动态平均化。EF手在N端结构域中完整,环形成一个短的反平行β折叠。在低盐条件下,apoCaM的C端结构域存在两个螺旋-环-螺旋EF手基序,但未显示链间NOE。apoCaM与Neurop肽复合时的光谱扰动相对较小,较大的化学位移扰动发生在C端结构域。总体二级结构和三级结构似乎与游离apoCaM大致相同。用钙对apoCaM.Neurop复合物进行化学计量滴定表明,C端结构域的EF手对钙的亲和力高于N端结构域的EF手。因此,这种复合物为研究肽与钙调蛋白的钙依赖性和非钙依赖性结合的结构和能量后果提供了独特的机会。

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