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溶液中猪钙结合蛋白D9k的1H NMR研究:序列共振归属、二级结构和整体折叠

1H NMR studies of porcine calbindin D9k in solution: sequential resonance assignment, secondary structure, and global fold.

作者信息

Drakenberg T, Hofmann T, Chazin W J

机构信息

Department of Molecular Biology, Research Institute of Scripps Clinic, La Jolla, California 92037.

出版信息

Biochemistry. 1989 Jul 11;28(14):5946-54. doi: 10.1021/bi00440a035.

DOI:10.1021/bi00440a035
PMID:2775745
Abstract

The 1H nuclear magnetic resonance (NMR) spectrum of Ca2+-saturated porcine calbindin D9k (78 amino acids, Mr 8800) has been assigned. Greater than 98% of the 1H resonances, including spin systems for each amino acid residue, have been identified by using an approach that integrates data from a wide range of two-dimensional scalar correlated NMR experiments [Chazin, Rance, & Wright (1988) J. Mol. Biol. 202, 603-626]. Due to the limited quantity of sample and conformational heterogeneity of the protein, two-dimensional nuclear Overhauser effect (NOE) experiments also played an essential role in the identification of spin systems. On the basis of the pattern of scalar connectivities, 43 of the 78 spin systems could be directly assigned to the appropriate residue type. This provided an ample basis for obtaining the sequence-specific resonance assignments. The elements of secondary structure are identified from sequential and medium-range NOEs, values of 3JNH alpha, and the location of slowly exchanging backbone amide protons. Four well-defined helices and a mini beta-sheet between the two calcium binding loops are present in solution. These elements of secondary structure and a few key long-range NOEs provided sufficient information to define the global fold of the protein in solution. Generally good agreement is found between the crystal structure of the minor A form of bovine calbindin D9k and the solution structure of intact porcine calbindin D9k. The only significant difference is a short one-turn helix in the loop between helices II and III in the bovine crystal structure, which is clearly absent in the porcine solution structure.

摘要

已对钙离子饱和的猪钙结合蛋白D9k(78个氨基酸,分子量8800)的1H核磁共振(NMR)谱进行了归属。通过整合来自广泛的二维标量相关NMR实验的数据的方法,已鉴定出超过98%的1H共振峰,包括每个氨基酸残基的自旋系统[查津、兰斯和赖特(1988年)《分子生物学杂志》202卷,603 - 626页]。由于样品量有限以及蛋白质的构象异质性,二维核Overhauser效应(NOE)实验在自旋系统的鉴定中也发挥了重要作用。根据标量连接模式,78个自旋系统中的43个可直接归属到相应的残基类型。这为获得序列特异性共振归属提供了充足的依据。二级结构单元是从序列和中程NOE、3JNHα值以及缓慢交换的主链酰胺质子的位置来确定的。溶液中存在四个明确的螺旋以及两个钙结合环之间的一个小β折叠。这些二级结构单元和一些关键的长程NOE提供了足够的信息来确定蛋白质在溶液中的整体折叠。在牛钙结合蛋白D9k的次要A晶型的晶体结构与完整猪钙结合蛋白D9k的溶液结构之间通常有很好的一致性。唯一显著的差异是在牛晶体结构中螺旋II和III之间的环中有一个短的单圈螺旋,而在猪溶液结构中明显不存在。

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1H NMR studies of porcine calbindin D9k in solution: sequential resonance assignment, secondary structure, and global fold.溶液中猪钙结合蛋白D9k的1H NMR研究:序列共振归属、二级结构和整体折叠
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