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结合配体与未结合配体的鸡、酵母和锥虫磷酸丙糖异构酶的精细晶体结构比较。

Comparison of the refined crystal structures of liganded and unliganded chicken, yeast and trypanosomal triosephosphate isomerase.

作者信息

Wierenga R K, Noble M E, Davenport R C

机构信息

European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

J Mol Biol. 1992 Apr 20;224(4):1115-26. doi: 10.1016/0022-2836(92)90473-w.

Abstract

The refined crystal structures of chicken, yeast and trypanosomal triosephosphate isomerase (TIM) have been compared. TIM is known to exist in an "open" (unliganded) and "closed" (liganded) conformation. For chicken TIM only the refined open structure is available, whereas for yeast TIM and trypanosomal TIM refined structures of both the open and the closed structure have been used for this study. Comparison of these structures shows that the open structures of chicken TIM, yeast TIM and trypanosomal TIM are essentially identical. Also it is shown that the closed structures of yeast TIM and trypanosomal TIM are essentially identical. The conformational difference between the open and closed structures concerns a major shift (7 A) in loop-6. Minor shifts are observed in the two adjacent loops, loop-5 (1 A) and loop-7 (1 A). The pairwise comparison of the three different TIM barrels shows that the 105C alpha atoms of the core superimpose within 0.9 A. The sequences of these three TIMs have a pairwise sequence identity of approximately 50%. The residues that line the active site are 100% conserved. The residues interacting with each other across the dimer interface show extensive variability, but the direct hydrogen bonds between the two subunits are well conserved. The orientation of the two monomers with respect to each other is almost identical in the three different TIM structures. There are 56 (22%) conserved residues out of approximately 250 residues in 13 sequences. The functions of most of these conserved residues can be understood from the available open and closed structures of the three different TIMs. Some of these residues are quite far from the active site. For example, at a distance of 19 A from the active site there is a conserved saltbridge interaction between residues at the C-terminal ends of alpha-helix-6 and alpha-helix-7. This anchoring contrasts with the large conformational flexibility of loop-6 and loop-7 near the N termini of these helices. The flexibility of loop-6 is facilitated by a conserved large empty cavity near the N terminus of alpha-helix-6, which exists only in the open conformation.

摘要

已对鸡、酵母和锥虫磷酸丙糖异构酶(TIM)的精细晶体结构进行了比较。已知TIM以“开放”(未结合配体)和“封闭”(结合配体)构象存在。对于鸡TIM,仅有精细的开放结构可用,而对于酵母TIM和锥虫TIM,本研究使用了开放结构和封闭结构的精细结构。这些结构的比较表明,鸡TIM、酵母TIM和锥虫TIM的开放结构基本相同。还表明酵母TIM和锥虫TIM的封闭结构基本相同。开放结构和封闭结构之间的构象差异涉及环6中的重大位移(7埃)。在相邻的两个环,即环5(1埃)和环7(1埃)中观察到微小位移。对三种不同TIM桶的成对比较表明,核心的105个Cα原子在0.9埃范围内重叠。这三种TIM的序列成对序列同一性约为50%。位于活性位点的残基100%保守。在二聚体界面相互作用的残基显示出广泛的变异性,但两个亚基之间的直接氢键高度保守。在三种不同的TIM结构中,两个单体相对于彼此的取向几乎相同。在13个序列中约250个残基中有56个(22%)保守残基。从三种不同TIM的可用开放结构和封闭结构可以理解这些保守残基中的大多数的功能。其中一些残基离活性位点相当远。例如,在距活性位点19埃处,α-螺旋6和α-螺旋7的C末端残基之间存在保守的盐桥相互作用。这种锚定与这些螺旋N末端附近环6和环7的大构象灵活性形成对比。α-螺旋6的N末端附近存在一个仅在开放构象中存在的保守大空穴,这促进了环6的灵活性。

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