Konrat R, Weiskirchen R, Kräutler B, Bister K
Institute of Organic Chemistry, University of Innsbruck, A-6020 Innsbruck, Austria.
J Biol Chem. 1997 May 2;272(18):12001-7. doi: 10.1074/jbc.272.18.12001.
Proteins of the cysteine-rich protein (CRP) family (CRP1, CRP2, and CRP3) are implicated in diverse processes linked to cellular differentiation and growth control. CRP proteins contain two LIM domains, each formed by two zinc-binding modules of the CCHC and CCCC type, respectively. The solution structure of the carboxyl-terminal LIM domain (LIM2) from recombinant quail CRP2 was determined by multidimensional homo- and heteronuclear magnetic resonance spectroscopy. The folding topology retains both independent zinc binding modules (CCHC and CCCC). Each module consists of two orthogonally arranged antiparallel beta-sheets, and the carboxyl-terminal CCCC module is terminated by an alpha-helix. 15N magnetic relaxation data indicate that the modules differ in terms of conformational flexibility. They pack together via a hydrophobic core region. In addition, Arg122 in the CCHC module and Glu155 in the CCCC module are linked by an intermodular hydrogen bond and/or salt bridge. These residues are absolutely conserved in the CRP family of LIM proteins, and their interaction might contribute to the relative orientation of the two zinc-binding modules in CRP LIM2 domains. The global fold of quail CRP2 LIM2 is very similar to that of the carboxyl-terminal LIM domain of the related but functionally distinct CRP family member CRP1, analyzed recently. The carboxyl-terminal CCCC module is structurally related to the DNA-binding domain of the erythroid transcription factor GATA-1. In the two zinc-binding modules of quail CRP2 LIM2, flexible loop regions made up of conserved amino acid residues are located on the same side of the LIM2 domain and may cooperate in macromolecular recognition.
富含半胱氨酸蛋白(CRP)家族(CRP1、CRP2和CRP3)的蛋白质参与了与细胞分化和生长控制相关的多种过程。CRP蛋白包含两个LIM结构域,每个结构域分别由CCHC和CCCC型的两个锌结合模块组成。通过多维同核和异核磁共振光谱法测定了重组鹌鹑CRP2羧基末端LIM结构域(LIM2)的溶液结构。折叠拓扑结构保留了两个独立的锌结合模块(CCHC和CCCC)。每个模块由两个正交排列的反平行β-折叠组成,羧基末端的CCCC模块以α-螺旋结束。15N磁弛豫数据表明,这些模块在构象灵活性方面存在差异。它们通过一个疏水核心区域聚集在一起。此外,CCHC模块中的Arg122和CCCC模块中的Glu155通过模块间氢键和/或盐桥相连。这些残基在CRP家族的LIM蛋白中绝对保守,它们的相互作用可能有助于CRP LIM2结构域中两个锌结合模块的相对取向。鹌鹑CRP2 LIM2的整体折叠与最近分析的相关但功能不同的CRP家族成员CRP1的羧基末端LIM结构域非常相似。羧基末端的CCCC模块在结构上与红系转录因子GATA-1的DNA结合结构域相关。在鹌鹑CRP2 LIM2的两个锌结合模块中,由保守氨基酸残基组成的柔性环区域位于LIM2结构域的同一侧,可能在大分子识别中协同作用。