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神经颗粒蛋白会改变钙调蛋白的结构和钙结合特性。

Neurogranin alters the structure and calcium binding properties of calmodulin.

作者信息

Hoffman Laurel, Chandrasekar Anuja, Wang Xu, Putkey John A, Waxham M Neal

机构信息

From the Departments of Neurobiology and Anatomy and.

Biochemistry and Molecular Biology, University of Texas Medical School at Houston, Houston, Texas 77030.

出版信息

J Biol Chem. 2014 May 23;289(21):14644-55. doi: 10.1074/jbc.M114.560656. Epub 2014 Apr 8.

Abstract

Neurogranin (Ng) is a member of the IQ motif class of calmodulin (CaM)-binding proteins, and interactions with CaM are its only known biological function. In this report we demonstrate that the binding affinity of Ng for CaM is weakened by Ca(2+) but to a lesser extent (2-3-fold) than that previously suggested from qualitative observations. We also show that Ng induced a >10-fold decrease in the affinity of Ca(2+) binding to the C-terminal domain of CaM with an associated increase in the Ca(2+) dissociation rate. We also discovered a modest, but potentially important, increase in the cooperativity in Ca(2+) binding to the C-lobe of CaM in the presence of Ng, thus sharpening the threshold for the C-domain to become Ca(2+)-saturated. Domain mapping using synthetic peptides indicated that the IQ motif of Ng is a poor mimetic of the intact protein and that the acidic sequence just N-terminal to the IQ motif plays an important role in reproducing Ng-mediated decreases in the Ca(2+) binding affinity of CaM. Using NMR, full-length Ng was shown to make contacts largely with residues in the C-domain of CaM, although contacts were also detected in residues in the N-terminal domain. Together, our results can be consolidated into a model where Ng contacts residues in the N- and C-lobes of both apo- and Ca(2+)-bound CaM and that although Ca(2+) binding weakens Ng interactions with CaM, the most dramatic biochemical effect is the impact of Ng on Ca(2+) binding to the C-terminal lobe of CaM.

摘要

神经颗粒素(Ng)是钙调蛋白(CaM)结合蛋白IQ基序家族的成员,与CaM的相互作用是其唯一已知的生物学功能。在本报告中,我们证明Ng与CaM的结合亲和力会被Ca(2+)削弱,但程度小于之前定性观察所表明的(2 - 3倍)。我们还表明,Ng使Ca(2+)与CaM C末端结构域结合的亲和力降低了10倍以上,同时Ca(2+)解离速率增加。我们还发现,在存在Ng的情况下,Ca(2+)与CaM C叶结合的协同性有适度但可能重要的增加,从而提高了C结构域达到Ca(2+)饱和的阈值。使用合成肽进行的结构域映射表明,Ng的IQ基序并不能很好地模拟完整蛋白,并且IQ基序N端的酸性序列在重现Ng介导的CaM的Ca(2+)结合亲和力降低方面起着重要作用。通过核磁共振(NMR)显示,全长Ng主要与CaM C结构域中的残基接触,不过在N端结构域的残基中也检测到了接触。总之,我们的结果可以整合到一个模型中,即Ng与游离态和Ca(2+)结合态的CaM的N叶和C叶中的残基都有接触,并且尽管Ca(2+)结合会削弱Ng与CaM的相互作用,但最显著的生化效应是Ng对Ca(2+)与CaM C末端叶结合的影响。

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