Yao X, Pérez-Alvarado G C, Louis H A, Pomiès P, Hatt C, Summers M F, Beckerle M C
Howard Hughes Medical Institute, Department of Chemistry and Biochemistry, University of Maryland Baltimore County 21250, USA.
Biochemistry. 1999 May 4;38(18):5701-13. doi: 10.1021/bi982036y.
The mechanism by which the contractile machinery of muscle is assembled and maintained is not well-understood. Members of the cysteine-rich protein (CRP) family have been implicated in these processes. Three vertebrate CRPs (CRP1-3) that exhibit developmentally regulated muscle-specific expression have been identified. All three proteins are associated with the actin cytoskeleton, and one has been shown to be required for striated muscle structure and function. The vertebrate CRPs identified to date display a similar molecular architecture; each protein is comprised of two tandemly arrayed LIM domains, protein-binding motifs found in a number of proteins with roles in cell differentiation. Each LIM domain coordinates two Zn(II) ions that are bound independently in CCHC (C=Cys, H=His) and CCCC modules. Here we describe the solution structure of chicken CRP1 determined by homonuclear and 1H-15N heteronuclear magnetic resonance spectroscopy. Comparison of the structures of the two LIM domains of CRP1 reveals a high degree of similarity in their tertiary folds. In addition, the two component LIM domains represent two completely independent folding units and exhibit no apparent interactions with each other. The structural independence and spatial separation of the two LIM domains of CRP1 are compatible with an adapter or linker role for the protein.
肌肉收缩机制的组装和维持方式尚未得到充分理解。富含半胱氨酸蛋白(CRP)家族的成员与这些过程有关。已鉴定出三种脊椎动物CRP(CRP1 - 3),它们表现出发育调控的肌肉特异性表达。这三种蛋白质都与肌动蛋白细胞骨架相关,并且其中一种已被证明是横纹肌结构和功能所必需的。迄今为止鉴定出的脊椎动物CRP显示出相似的分子结构;每种蛋白质都由两个串联排列的LIM结构域组成,LIM结构域是在许多参与细胞分化的蛋白质中发现的蛋白质结合基序。每个LIM结构域配位两个在CCHC(C = 半胱氨酸,H = 组氨酸)和CCCC模块中独立结合的Zn(II)离子。在这里,我们描述了通过同核和1H - 15N异核磁共振光谱法测定的鸡CRP1的溶液结构。CRP1两个LIM结构域的结构比较揭示了它们三级折叠的高度相似性。此外,两个组成性LIM结构域代表两个完全独立的折叠单元,并且彼此之间没有明显的相互作用。CRP1两个LIM结构域的结构独立性和空间分离与该蛋白质作为衔接子或连接子的作用相一致。