首页> 外文期刊>Proteins: Structure, Function, and Genetics >Crystal structures of the complexes of trichosanthin with four substrate analogs and catalytic mechanism of RNA N-glycosidase.
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Crystal structures of the complexes of trichosanthin with four substrate analogs and catalytic mechanism of RNA N-glycosidase.

机译:天花粉蛋白与四种底物类似物的配合物的晶体结构和RNA N-糖苷酶的催化机理。

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摘要

Four substrate analogs-nicotinamide adenine dinucleotide, adenylyl (3', 5') guanosine, guanylyl (3',5') adenosine, and adenosine 2', 5'-diphosphate-have been used to prepare the complexes with trichosanthin (TCS), a type I ribosome-inactivating protein that possesses the activity of N-glycosidase. The crystal structures of the complexes have been determined and refined at high resolution. The refined structures show that the N-glycosidic bonds of all the four substrate analogues are hydrolyzed and a common structure is shared by the four complexes, in which only adenine, the product of the enzymatic reaction, is bound in the active center. The structure is compared with those of native trichosanthin and a previously reported trichosanthin-NADPH complex in which the N-glycosidic bond is uncleaved. The structural comparison shows that the conformation of Tyr70 obviously differs from those in the latter two structures, i.e., the side chain of Tyr70 is rotated along its Cbeta-Cgamma bond by approximately 70 degrees. The water molecule found to be preassociated with the N-glycosidic bond in the TCS-NADPH complex structure and proposed to be the water candidate responsible for hydrolyzing the N-glycosidic bond disappears in the trichosanthin-product complex structure. Based on the comparison of the three structures representing the different stages of the enzymatic reaction, the catalytic mechanism of RNA N-glycosidase has been further elucidated. Proteins 2000;39:37-46. Copyright 2000 Wiley-Liss, Inc.
机译:四种底物类似物-烟酰胺腺嘌呤二核苷酸,腺苷基(3',5')鸟苷,鸟苷基​​(3',5')腺苷和腺苷2',5'-二磷酸腺苷已用于制备与天花粉蛋白(TCS)形成的复合物,是一种具有N-糖苷酶活性的I型核糖体失活蛋白。配合物的晶体结构已经确定并以高分辨率进行了精制。精炼的结构表明,所有四个底物类似物的N-糖苷键均被水解,并且四个络合物共有一个共同的结构,其中只有腺嘌呤(酶促反应的产物)结合在活性中心。将该结构与天然天花粉蛋白和先前报道的天花粉蛋白-NADPH复合物的结构进行比较,其中N-糖苷键未断裂。结构比较表明,Tyr70的构象明显不同于后两个结构,即Tyr70的侧链沿其Cbeta-Cgamma键旋转了大约70度。发现水分子与TCS-NADPH复合结构中的N-糖苷键预缔合,并被认为是负责水解天花粉蛋白-产物复合物结构中N-糖苷键消失的水候选物。在比较代表酶促反应不同阶段的三个结构的基础上,进一步阐明了RNA N-糖苷酶的催化机理。蛋白质2000; 39:37-46。版权所有2000 Wiley-Liss,Inc.

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