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环7对钙调神经磷酸酶活性的重要性。

The importance of Loop 7 for the activity of calcineurin.

作者信息

Liu Ping, Huang Chao, Wang Hai-long, Zhou Ke, Xiao Fang-xiang, Qun Wei

机构信息

Department of Biochemistry and Molecular Biology, Beijing Normal University, Beijing Key Laboratory, Beijing 100875, PR China.

出版信息

FEBS Lett. 2004 Nov 5;577(1-2):205-8. doi: 10.1016/j.febslet.2004.09.082.

Abstract

Calcineurin (CN) is a heterodimer composed of a catalytic subunit (CNA) and a regulatory subunit (CNB). Loop 7 lies within the CNA catalytic domain. To investigate the role of Loop 7 in enzyme activity, we systematically examined all its residues by site-directed deletion mutation. Our results show that the Loop 7 residues are important for enzyme activity. Besides deleting residues V314, Y315 or N316, enzyme activity also increased dramatically when residues D313 or K318 were deleted. In contrast, almost all activity was lost when L312 or N317 were deleted. Ni2+ and Mn2+ were effective activators for all active mutants. However, whereas the wild-type enzyme was more efficiently activated by Ni2+ than by Mn2+ with 32P-labeled R(II) peptide as substrate, the reverse was true in all the mutants. We also found that the effect of Loop 7 on enzyme activity was substrate dependent, and involved interactions between Loop 7 residues and the unresolved part of the CN crystal structure near the auto-inhibitory domain and catalytic site.

摘要

钙调神经磷酸酶(CN)是一种由催化亚基(CNA)和调节亚基(CNB)组成的异源二聚体。环7位于CNA催化结构域内。为了研究环7在酶活性中的作用,我们通过定点缺失突变系统地检测了其所有残基。我们的结果表明,环7残基对酶活性很重要。除了缺失残基V314、Y315或N316外,当缺失残基D313或K318时,酶活性也显著增加。相反,当缺失L312或N317时,几乎所有活性都丧失了。Ni2+和Mn2+对所有活性突变体都是有效的激活剂。然而,以32P标记的R(II)肽为底物时,野生型酶被Ni2+激活的效率高于被Mn2+激活的效率,而在所有突变体中情况则相反。我们还发现,环7对酶活性的影响取决于底物,并且涉及环7残基与自抑制结构域和催化位点附近CN晶体结构未解析部分之间的相互作用。

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