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钙载体蛋白失活结构域的溶液结构与主链动力学

Solution structure and backbone dynamics of the defunct domain of calcium vector protein.

作者信息

Théret I, Baladi S, Cox J A, Gallay J, Sakamoto H, Craescu C T

机构信息

INSERM U350 and Institut Curie-Recherche, Centre Universitaire, Bâtiments 110-112, 91405 Orsay Cedex, France.

出版信息

Biochemistry. 2001 Nov 20;40(46):13888-97.

Abstract

CaVP (calcium vector protein) is a Ca(2+) sensor of the EF-hand protein family which is highly abundant in the muscle of Amphioxus. Its three-dimensional structure is not known, but according to the sequence analysis, the protein is composed of two domains, each containing a pair of EF-hand motifs. We determined recently the solution structure of the C-terminal domain (Trp81-Ser161) and characterized the large conformational and dynamic changes induced by Ca(2+) binding. In contrast, the N-terminal domain (Ala1-Asp86) has lost the capacity to bind the metal ion due to critical mutations and insertions in the two calcium loops. In this paper, we report the solution structure of the N-terminal domain and its backbone dynamics based on NMR spectroscopy, nuclear relaxation, and molecular modeling. The well-resolved three-dimensional structure is typical of a pair of EF-hand motifs, joined together by a short antiparallel beta-sheet. The tertiary arrangement of the two EF-hands results in a closed-type conformation, with near-antiparallel alpha-helices, similar to other EF-hand pairs in the absence of calcium ions. To characterize the internal dynamics of the protein, we measured the (15)N nuclear relaxation rates and the heteronuclear NOE effect in (15)N-labeled N-CaVP at a magnetic field of 11.74 T and 298 K. The domain is mainly monomeric in solution and undergoes an isotropic Brownian rotational diffusion with a correlation time of 7.1 ns, in good agreement with the fluorescence anisotropy decay measurements. Data analysis using a model-free procedure showed that the amide backbone groups in the alpha-helices and beta-strands undergo highly restricted movements on a picosecond to nanosecond time scale. The amide groups in Ca(2+) binding loops and in the linker fragment also display rapid fluctuations with slightly increased amplitudes.

摘要

钙载体蛋白(CaVP)是EF手蛋白家族的一种Ca(2+)传感器,在文昌鱼肌肉中高度丰富。其三维结构尚不清楚,但根据序列分析,该蛋白由两个结构域组成,每个结构域包含一对EF手基序。我们最近确定了C末端结构域(Trp81-Ser161)的溶液结构,并表征了Ca(2+)结合诱导的大的构象和动态变化。相比之下,由于两个钙环中的关键突变和插入,N末端结构域(Ala1-Asp86)失去了结合金属离子的能力。在本文中,我们基于核磁共振光谱、核弛豫和分子建模报告了N末端结构域的溶液结构及其主链动力学。解析良好的三维结构是一对EF手基序的典型结构,通过一个短的反平行β折叠连接在一起。两个EF手的三级排列导致一种封闭型构象,具有近乎反平行的α螺旋,类似于在没有钙离子的情况下的其他EF手对。为了表征该蛋白的内部动力学,我们在11.74 T磁场和298 K温度下测量了(15)N标记的N-CaVP中的(15)N核弛豫率和异核NOE效应。该结构域在溶液中主要以单体形式存在,并经历各向同性的布朗旋转扩散,相关时间为7.1 ns,与荧光各向异性衰减测量结果高度一致。使用无模型程序的数据分析表明,α螺旋和β链中的酰胺主链基团在皮秒到纳秒的时间尺度上经历高度受限的运动。Ca(2+)结合环和连接片段中的酰胺基团也表现出快速波动,幅度略有增加。

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