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作为硫胺素焦磷酸激酶底物的抗硫胺素

Pyrithiamine as a substrate for thiamine pyrophosphokinase.

作者信息

Liu Jing-Yuan, Timm David E, Hurley Thomas D

机构信息

Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, Indiana 46202-5122, USA.

出版信息

J Biol Chem. 2006 Mar 10;281(10):6601-7. doi: 10.1074/jbc.M510951200. Epub 2005 Dec 19.

Abstract

Thiamine pyrophosphokinase transfers a pyrophosphate group from a nucleoside triphosphate, such as ATP, to the hydroxyl group of thiamine to produce thiamine pyrophosphate. Deficiencies in thiamine can result in the development of the neurological disorder Wernicke-Korsakoff Syndrome as well as the potentially fatal cardiovascular disease wet beriberi. Pyrithiamine is an inhibitor of thiamine metabolism that induces neurological symptoms similar to that of Wernicke-Korsakoff Syndrome in animals. However, the mechanism by which pyrithiamine interferes with cellular thiamine phosphoester homeostasis is not entirely clear. We used kinetic assays coupled with mass spectrometry of the reaction products and x-ray crystallography of an equilibrium reaction mixture of thiamine pyrophosphokinase, pyrithiamine, and Mg2+/ATP to elucidate the mechanism by which pyrithiamine inhibits the enzymatic production of thiamine pyrophosphate. Three lines of evidence support the ability of thiamine pyrophosphokinase to form pyrithiamine pyrophosphate. First, a coupled enzyme assay clearly demonstrated the ability of thiamine pyrophosphokinase to produce AMP when pyrithiamine was used as substrate. Second, an analysis of the reaction mixture by mass spectrometry directly identified pyrithiamine pyrophosphate in the reaction mixture. Last, the structure of thiamine pyrophosphokinase crystallized from an equilibrium substrate/product mixture shows clear electron density for pyrithiamine pyrophosphate bound in the enzyme active site. This structure also provides the first clear picture of the binding pocket for the nucleoside triphosphate and permits the first detailed understanding of the catalytic requirements for catalysis in this enzyme.

摘要

硫胺素焦磷酸激酶将焦磷酸基团从三磷酸核苷(如ATP)转移至硫胺素的羟基上,以生成硫胺素焦磷酸。硫胺素缺乏可导致神经紊乱性疾病韦尼克-科尔萨科夫综合征以及潜在致命的心血管疾病湿性脚气病的发生。吡硫胺是硫胺素代谢的一种抑制剂,可在动物体内诱发与韦尼克-科尔萨科夫综合征类似的神经症状。然而,吡硫胺干扰细胞硫胺素磷酸酯稳态的机制尚不完全清楚。我们运用动力学分析,结合反应产物的质谱分析以及硫胺素焦磷酸激酶、吡硫胺和Mg2+/ATP平衡反应混合物的X射线晶体学分析,以阐明吡硫胺抑制硫胺素焦磷酸酶促生成的机制。三条证据支持硫胺素焦磷酸激酶形成吡硫胺焦磷酸的能力。首先,一种偶联酶分析清楚地证明,当以吡硫胺作为底物时,硫胺素焦磷酸激酶具有生成AMP的能力。其次,通过质谱对反应混合物进行分析,直接在反应混合物中鉴定出了吡硫胺焦磷酸。最后,从平衡底物/产物混合物中结晶得到的硫胺素焦磷酸激酶的结构显示,在酶活性位点结合的吡硫胺焦磷酸具有清晰的电子密度。该结构还首次清晰呈现了三磷酸核苷的结合口袋,并首次详细阐释了该酶催化反应的催化要求。

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