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钙结合蛋白D9k的EF手型亚结构域同二聚体和异二聚体中的二硫键:稳定性、钙结合及核磁共振研究

Disulfide bonds in homo- and heterodimers of EF-hand subdomains of calbindin D9k: stability, calcium binding, and NMR studies.

作者信息

Linse S, Thulin E, Sellers P

机构信息

Lund University, Chemical Center, Sweden.

出版信息

Protein Sci. 1993 Jun;2(6):985-1000. doi: 10.1002/pro.5560020612.

Abstract

The effect of decreased protein flexibility on the stability and calcium binding properties of calbindin D9k has been addressed in studies of a disulfide bridged calbindin D9k mutant, denoted (L39C + P43M + I73C), with substitutions Leu 39-->Cys, Ile 73-->Cys, and Pro 43-->Met. Backbone 1H NMR assignments show that the disulfide bond, which forms spontaneously under air oxidation, is well accommodated. The disulfide is inserted on the opposite end of the protein molecule with respect to the calcium sites, to avoid direct interference with these sites, as confirmed by 113Cd NMR. The effect of the disulfide bond on calcium binding was assessed by titrations in the presence of a chromophoric chelator. A small but significant effect on the cooperativity was found, as well as a very modest reduction in calcium affinity. The disulfide bond increases Tm, the transition midpoint of thermal denaturation, of calcium free calbindin D9k from 85 to 95 degrees C and Cm, the urea concentration of half denaturation, from 5.3 to 8.0 M. Calbindins with one covalent bond linking the two EF-hand subdomains are equally stable regardless if the covalent link is the 43-44 peptide bond or the disulfide bond. Kinetic remixing experiments show that separated CNBr fragments of (L39C + P43M + I73C), each comprising one EF-hand, form disulfide linked homodimers. Each homodimer binds two calcium ions with positive co-operativity, and an average affinity of 10(6) M-1. Disulfide linkage dramatically increases the stability of each homodimer. For the homodimer of the C-terminal fragment Tm increases from 59 +/- 2 without covalent linkage to 91 +/- 2 degrees C with disulfide, and Cm from approximately 1.5 to 7.5 M. The overall topology of this homodimer is derived from 1H NMR assignments and a few key NOEs.

摘要

在对一种二硫键桥连的钙结合蛋白D9k突变体(记为(L39C + P43M + I73C),其氨基酸替换为Leu 39→Cys、Ile 73→Cys和Pro 43→Met)的研究中,探讨了蛋白质柔韧性降低对钙结合蛋白D9k稳定性和钙结合特性的影响。主链1H NMR归属表明,在空气氧化条件下自发形成的二硫键能够很好地被容纳。如113Cd NMR所证实,二硫键插入到蛋白质分子中相对于钙结合位点的另一端,以避免对这些位点产生直接干扰。通过在发色螯合剂存在下进行滴定,评估了二硫键对钙结合的影响。发现二硫键对协同性有微小但显著的影响,同时钙亲和力也有非常适度的降低。二硫键使无钙的钙结合蛋白D9k的热变性转变中点Tm从85℃提高到95℃,使半变性的尿素浓度Cm从5.3 M提高到8.0 M。连接两个EF-手型亚结构域的具有一个共价键的钙结合蛋白,无论共价连接是43 - 44肽键还是二硫键,其稳定性都是相同的。动力学重混合实验表明,(L39C + P43M + I73C)的经溴化氰裂解分离的片段,每个片段包含一个EF-手型结构,能形成二硫键连接的同型二聚体。每个同型二聚体以正协同性结合两个钙离子,平均亲和力为10(6) M-1。二硫键连接显著提高了每个同型二聚体的稳定性。对于C末端片段的同型二聚体,Tm从无共价连接时的59±2℃提高到有二硫键时的91±2℃,Cm从约1.5 M提高到7.5 M。该同型二聚体的整体拓扑结构源自1H NMR归属和一些关键的核Overhauser效应(NOE)。

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