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通过蛋白质晶体学和定点诱变技术对硫胺素二磷酸依赖性转酮醇酶中底物结合的研究。

Examination of substrate binding in thiamin diphosphate-dependent transketolase by protein crystallography and site-directed mutagenesis.

作者信息

Nilsson U, Meshalkina L, Lindqvist Y, Schneider G

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institute, Doktorsringen 4, S-171 77 Stockholm, Sweden.

出版信息

J Biol Chem. 1997 Jan 17;272(3):1864-9. doi: 10.1074/jbc.272.3.1864.

Abstract

The three-dimensional structure of the quaternary complex of Saccharomyces cerevisiae transketolase, thiamin diphosphate, Ca2+, and the acceptor substrate erythrose-4-phosphate has been determined to 2.4 A resolution by protein crystallographic methods. Erythrose-4-phosphate was generated by enzymatic cleavage of fructose-6-phosphate. The overall structure of the enzyme in the quaternary complex is very similar to the structure of the holoenzyme; no large conformational changes upon substrate binding were found. The substrate binds in a deep cleft between the two subunits. The phosphate group of the substrate interacts with the side chains of the conserved residues Arg359, Arg528, His469, and Ser386 at the entrance of this cleft. The aldehyde moiety of the sugar phosphate is located in the vicinity of the C-2 carbon atom of the thiazolium ring of the cofactor. The aldehyde oxygen forms hydrogen bonds to the side chains of the residues His30 and His263. One of the hydroxyl groups of the sugar phosphate forms a hydrogen bond to the side chain of Asp477. The preference of the enzyme for donor substrates with D-threo configuration at the C-3 and C-4 positions and for alpha-hydroxylated acceptor substrates can be understood from the pattern of hydrogen bonds between enzyme and substrate. Amino acid replacements by site-directed mutagenesis of residues Arg359, Arg528, and His469 at the phosphate binding site yield mutant enzymes with considerable residual catalytic activity but increased Km values for the donor and in particular acceptor substrate, consistent with a role for these residues in phosphate binding. Replacement of Asp477 by alanine results in a mutant enzyme impaired in catalytic activity and with increased Km values for donor and acceptor substrates. These findings suggest a role for this amino acid in substrate binding and catalysis.

摘要

通过蛋白质晶体学方法,已确定酿酒酵母转酮醇酶、硫胺素二磷酸、Ca2+和受体底物赤藓糖-4-磷酸的四元复合物的三维结构,分辨率达到2.4埃。赤藓糖-4-磷酸是通过果糖-6-磷酸的酶促裂解产生的。四元复合物中酶的整体结构与全酶的结构非常相似;未发现底物结合时发生大的构象变化。底物结合在两个亚基之间的深裂缝中。底物的磷酸基团与该裂缝入口处保守残基Arg359、Arg528、His469和Ser386的侧链相互作用。磷酸糖的醛基部分位于辅因子噻唑环C-2碳原子附近。醛基氧与残基His30和His263的侧链形成氢键。磷酸糖的一个羟基与Asp477的侧链形成氢键。从酶与底物之间的氢键模式可以理解该酶对C-3和C-4位具有D-苏式构型的供体底物以及对α-羟基化受体底物的偏好。通过定点诱变磷酸结合位点的残基Arg359、Arg528和His469进行氨基酸替换,产生的突变酶具有相当大的残余催化活性,但供体尤其是受体底物的Km值增加,这与这些残基在磷酸结合中的作用一致。用丙氨酸替换Asp477导致突变酶的催化活性受损,供体和受体底物的Km值增加。这些发现表明该氨基酸在底物结合和催化中起作用。

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