首页> 外文期刊>Protein Science: A Publication of the Protein Society >Structure of 6‐diazo‐5‐oxo‐norleucine‐bound human gamma‐glutamyl transpeptidase 1, a novel mechanism of inactivation
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Structure of 6‐diazo‐5‐oxo‐norleucine‐bound human gamma‐glutamyl transpeptidase 1, a novel mechanism of inactivation

机译:6-Diazo-5-氧代氨酸酯结合的人类γ-谷氨酸转琥珀肽酶1的结构,一种新的灭活机制

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Abstract Intense efforts are underway to identify inhibitors of the enzyme gamma‐glutamyl transpeptidase 1 (GGT1) which cleaves extracellular gamma‐glutamyl compounds and contributes to the pathology of asthma, reperfusion injury and cancer. The glutamate analog, 6‐diazo‐5‐oxo‐norleucine (DON), inhibits GGT1. DON also inhibits many essential glutamine metabolizing enzymes rendering it too toxic for use in the clinic as a GGT1 inhibitor. We investigated the molecular mechanism of human GGT1 (hGGT1) inhibition by DON to determine possible strategies for increasing its specificity for hGGT1. DON is an irreversible inhibitor of hGGT1. The second order rate constant of inactivation was 0.052 m M ?1 min ?1 and the K i was 2.7?±?0.7 m M . The crystal structure of DON‐inactivated hGGT1 contained a molecule of DON without the diazo‐nitrogen atoms in the active site. The overall structure of the hGGT1‐DON complex resembled the structure of the apo‐enzyme; however, shifts were detected in the loop forming the oxyanion hole and elements of the main chain that form the entrance to the active site. The structure of hGGT1‐DON complex revealed two covalent bonds between the enzyme and inhibitor which were part of a six membered ring. The ring included the OG atom of Thr381, the reactive nucleophile of hGGT1 and the α‐amine of Thr381. The structure of DON‐bound hGGT1 has led to the discovery of a new mechanism of inactivation by DON that differs from its inactivation of other glutamine metabolizing enzymes, and insight into the activation of the catalytic nucleophile that initiates the hGGT1 reaction.
机译:摘要正在进行强烈的努力来鉴定酶γ-谷氨酸缩肽酶1(GGT1)的抑制剂,其切割细胞外γ-谷氨酸化合物并有助于哮喘,再灌注损伤和癌症的病理。谷氨酸类似物,6-Diazo-5-氧代毒素(Don)抑制GGT1。 DON还抑制许多必需的谷氨酰胺代谢酶,使其过于毒性以在临床中用作GGT1抑制剂。我们研究了DON以确定提高HGGT1的特异性的可能策略的人GGT1(HGGT1)抑制的分子机制。 Don是Hggt1的不可逆抑制剂。灭活的二阶速率常数为0.052 m m?1分钟?1和k i为2.7?±0.7米米。唐灭活HGGT1的晶体结构含有在没有活性位点的不氮杂氮原子的情况下的分子。 HGGT1-DON复合物的整体结构类似于APO-酶的结构;然而,在形成氧气孔的环中检测到偏移和形成活性位点入口的主链的元件。 HGGT1-DON复合物的结构揭示了酶和抑制剂之间的两种共价键,其是六元环的一部分。环包括THR381的OG原子,HGGT1的反应性亲核试剂和THR381的α-胺。 Don-Bound HGGT1的结构导致DON的灭活机制的发现,其不同于其其他谷氨酰胺代谢酶的灭活,以及洞察发起HGGT1反应的催化亲核试剂的激活。

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