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神经钙蛋白δ的功能及其分子作用机制
引用本文:邵婧婧,艾志营,郭泽坤. 神经钙蛋白δ的功能及其分子作用机制[J]. 中国生物化学与分子生物学报, 2014, 30(9): 856-862
作者姓名:邵婧婧  艾志营  郭泽坤
作者单位:西北农林科技大学生命科学学院;西北农林科技大学农业部动物生物技术重点实验室;西北农林科技大学动物医学院;
基金项目:国家自然科学基金项目(No.31172279);国家转基因育种重大专项课题(No.2013ZX080 07-0 04)~~
摘    要:神经钙蛋白δ(neurocalcinδ)作为神经钙敏感蛋白(neuronal calcium sensors,NCSs)家族的重要成员之一,具有分布广泛、结构较保守的特性.早期研究发现,神经钙蛋白δ具有两对EF手结构(EF1,EF2,EF3和EF4).EF1不能结合Ca2+,而EF2、EF3和EF4与Ca2+结合能促使其N端豆蔻酰暴露,进而实现其由细胞质到细胞质膜的转移定位以及与靶蛋白的结合,从而发挥重要效应.本综述根据神经钙蛋白δ的"Ca2+-豆蔻酰基开关"特性,一方面介绍其能与膜鸟苷酸环化酶反应,参与cGMP信号转导,进而影响视觉和嗅觉,甚至血压等生物学活动;另一方面,介绍神经钙蛋白δ通过与S100β、网格蛋白、肌动蛋白、微管等蛋白质之间的相互作用,并参与细胞内囊泡运输,从而影响细胞内大分子包装、运输等过程.本文还阐明了神经钙蛋白δ参与精子发生、细胞癌变、肾病发生等过程.由于神经钙蛋白δ对了解某些疾病的发生原理、信号转导过程、细胞内信息调控网络等具有重要意义,本综述将为研究相关疾病提供新的研究方向与理论基础.

关 键 词:神经钙蛋白δ  钙信号  分子作用机制  
收稿时间:2014-02-21

Functions and Molecular Mechanism of Neurocalcin δ
SHAO Jing-Jing;AI Zhi-Ying;GUO Ze-Kun. Functions and Molecular Mechanism of Neurocalcin δ[J]. Chinese Journal of Biochemistry and Molecular Biology, 2014, 30(9): 856-862
Authors:SHAO Jing-Jing  AI Zhi-Ying  GUO Ze-Kun
Affiliation:SHAO Jing-Jing;AI Zhi-Ying;GUO Ze-Kun;College of Life Sciences,Northwest A&F University;Key Laboratory of Animal Biotechnology,Ministry of Agriculture,Northwest A&F University;College of Veterinary Medicine,Northwest A&F University;
Abstract:Neurocalcin δ is an important member of neuronal calcium sensor (NCS) family which is wide-expression and conservative. Neurocalcin δ consists of two pairs of EF-hand calciumbinding loop sequence (EF1, EF2, EF3 and EF4). Previous studies showed that,given the disabled EF1, neurocalcin δ binds Ca2+ via its EF2, EF3 and EF4 motifs, therefore exposes a covalently attached myristoyl at the N-terminus, resulting in translocation of neurocalcin δ from cytoplasm to membrane in a Ca 2+-dependent manner. This review focused on its “Ca 2+-myristoyl switch” characteristic. On the one hand, the roles of neurocalcin δ were introduced in vision, olfaction and even blood pressure through its reacting with membrane guanylate cyclase, which involved in cGMP signaling pathway. On the other hand, the potential roles of neurocalcin δ in vesicular trafficking, the interaction between neurocalcin δ and its protein patners S100β, actin, clathrin and tubulin were illustrated. Furthermore, neurocalcin δ may be involved in the progresses of spermatogenesis, tumorigenesis and diabetic nephropathy. The exploration of neurocalcin δ shed light on the pathology of some disease, signal transduction and intracellular regulatory network. This review may provide a new research direction or theoretical basis for related disease studies.
Keywords:neurocalcin δ  Ca2+ signal  molecular mechanism  
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