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神经元钙结合蛋白结构域I-II(第1-100位氨基酸残基)的结构与生化特性。与同源的钙结合蛋白D28k结构域I-II(第1-93位氨基酸残基)的比较。

Structural and biochemical characterization of neuronal calretinin domain I-II (residues 1-100). Comparison to homologous calbindin D28k domain I-II (residues 1-93).

作者信息

Palczewska M, Groves P, Ambrus A, Kaleta A, Kövér K E, Batta G, Kuźnicki J

机构信息

Department of Molecular and Cellular Neurobiology, Nencki Institute of Experimental Biology, Warsaw, Poland.

出版信息

Eur J Biochem. 2001 Dec;268(23):6229-37. doi: 10.1046/j.0014-2956.2001.02575.x.

Abstract

This study characterizes the calcium-bound CR I-II domain (residues 1-100) of rat calretinin (CR). CR, with six EF-hand motifs, is believed to function as a neuronal intracellular calcium-buffer and/or calcium-sensor. The secondary structure of CR I-II, defined by standard NMR methods on 13C,15N-labeled protein, contains four helices and two short interacting segments of extended structure between the calcium-binding loops. The linker between the two helix-loop-helix, EF-hand motifs is 12 residues long. Limited trypsinolysis at K60 (there are 10 other K/R residues in CR I-II) confirms that the linker of CR I-II is solvent-exposed and that other potential sites are protected by regular secondary structure. 45Ca-overlay of glutathione S-transferase (GST)-CR(1-60) and GST-CR(61-100) fusion proteins confirm that both EF-hands of CR I-II have intrinsic calcium-binding properties. The primary sequence and NMR chemical shifts, including calcium-sensitive glycine residues, also suggest that both EF-hand loops of CR I-II bind calcium. NMR relaxation, analytical ultracentrifugation, chemical cross-linking and NMR translation diffusion measurements indicate that CR I-II exists as a monomer. Calb I-II (the homologous domain of calbindin D28k) has the same EF-hand secondary structures as CR I-II, except that helix B is three residues longer and the linker has only four residues [Klaus, W., Grzesiek, S., Labhardt, A. M., Buckwald, P., Hunziker, W., Gross, M. D. & Kallick, D. A. (1999) Eur. J. Biochem. 262, 933-938]. In contrast, Calb I-II binds one calcium cation per monomeric unit and exists as a dimer. Despite close homology and similar secondary structures, CR I-II and Calb I-II probably have distinct tertiary structure features that suggest different cellular functions for the full-length proteins.

摘要

本研究对大鼠钙结合蛋白(CR)的钙结合CR I-II结构域(第1-100位氨基酸残基)进行了表征。CR具有六个EF-手基序,被认为可作为神经元细胞内钙缓冲剂和/或钙传感器发挥作用。通过对13C、15N标记的蛋白质采用标准核磁共振方法确定的CR I-II的二级结构包含四个螺旋以及钙结合环之间两个短的延伸结构相互作用片段。两个螺旋-环-螺旋EF-手基序之间的连接子长12个氨基酸残基。在K60处进行有限胰蛋白酶消化(CR I-II中还有其他10个K/R残基)证实CR I-II的连接子暴露于溶剂中,且其他潜在位点受到规则二级结构的保护。谷胱甘肽S-转移酶(GST)-CR(1-60)和GST-CR(61-100)融合蛋白的45Ca覆盖实验证实CR I-II的两个EF-手都具有内在的钙结合特性。一级序列和核磁共振化学位移,包括对钙敏感的甘氨酸残基,也表明CR I-II的两个EF-手环都能结合钙。核磁共振弛豫、分析超速离心、化学交联和核磁共振平移扩散测量表明CR I-II以单体形式存在。钙结合蛋白D28k的同源结构域Calb I-II与CR I-II具有相同的EF-手二级结构,只是螺旋B长三个氨基酸残基且连接子只有四个氨基酸残基[克劳斯,W.,格热谢克,S.,拉布哈特,A.M.,布克瓦尔德,P.,洪齐克,W.,格罗斯,M.D. & 卡利克,D.A.(1999年)《欧洲生物化学杂志》262,933-938]。相比之下,Calb I-II每个单体单元结合一个钙阳离子并以二聚体形式存在。尽管具有密切的同源性和相似的二级结构,但CR I-II和Calb I-II可能具有不同的三级结构特征,这表明全长蛋白具有不同的细胞功能。

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