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突变型单体己糖激酶I的晶体结构揭示了多个ADP结合位点以及与变构调节相关的构象变化。

Crystal structures of mutant monomeric hexokinase I reveal multiple ADP binding sites and conformational changes relevant to allosteric regulation.

作者信息

Aleshin A E, Kirby C, Liu X, Bourenkov G P, Bartunik H D, Fromm H J, Honzatko R B

机构信息

Department of Biochemistry Biophysics and Molecular Biology, Iowa State University, Ames, IA 50011, USA.

出版信息

J Mol Biol. 2000 Mar 3;296(4):1001-15. doi: 10.1006/jmbi.1999.3494.

Abstract

Hexokinase I, the pacemaker of glycolysis in brain tissue, is composed of two structurally similar halves connected by an alpha-helix. The enzyme dimerizes at elevated protein concentrations in solution and in crystal structures; however, almost all published data reflect the properties of a hexokinase I monomer in solution. Crystal structures of mutant forms of recombinant human hexokinase I, presented here, reveal the enzyme monomer for the first time. The mutant hexokinases bind both glucose 6-phosphate and glucose with high affinity to their N and C-terminal halves, and ADP, also with high affinity, to a site near the N terminus of the polypeptide chain. Exposure of the monomer crystals to ADP in the complete absence of glucose 6-phosphate reveals a second binding site for adenine nucleotides at the putative active site (C-half), with conformational changes extending 15 A to the contact interface between the N and C-halves. The structures reveal distinct conformational states for the C-half and a rigid-body rotation of the N-half, as possible elements of a structure-based mechanism for allosteric regulation of catalysis.

摘要

己糖激酶I是脑组织糖酵解的限速酶,由通过α-螺旋连接的两个结构相似的部分组成。在溶液和晶体结构中,该酶在蛋白质浓度升高时会二聚化;然而,几乎所有已发表的数据都反映了溶液中己糖激酶I单体的特性。本文展示的重组人己糖激酶I突变体形式的晶体结构首次揭示了该酶单体。突变型己糖激酶的N端和C端对葡萄糖6-磷酸和葡萄糖均具有高亲和力,对ADP也具有高亲和力,结合位点位于多肽链N端附近。在完全不存在葡萄糖6-磷酸的情况下,将单体晶体暴露于ADP中,发现在假定的活性位点(C端部分)存在腺嘌呤核苷酸的第二个结合位点,构象变化延伸至N端和C端之间的接触界面达15埃。这些结构揭示了C端部分的不同构象状态以及N端部分的刚体旋转,这可能是基于结构的催化变构调节机制的要素。

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