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首页> 外文期刊>Journal of the American Chemical Society >Remarkable and Unexpected Mechanism for (S)-3-Amino-4- (difluoromethylenyl)cyclohex-1-ene-1-carboxylic Acid as a Selective Inactivator of Human Ornithine Aminotransferase
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Remarkable and Unexpected Mechanism for (S)-3-Amino-4- (difluoromethylenyl)cyclohex-1-ene-1-carboxylic Acid as a Selective Inactivator of Human Ornithine Aminotransferase

机译:(S)-3-氨基-4-(二氟甲基)环己-1-烯丙基-1-羧酸的显着和意外的机制,作为人奥地甘氨酸氨基转移酶的选择性灭失剂

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摘要

Human ornithine aminotransferase (hOAT) is a pyridoxal 5'-phosphate (PLP)-dependent enzyme that was recently found to play an important role in the metabolic reprogramming of hepatocellular carcinoma (HCC) via the proline and glutamine metabolic pathways. The selective inhibition of hOAT by compound 10 exhibited potent in vivo antitumor activity. Inspired by the discovery of the aminotransferase inactivator (lS,3S)-3-amino-4-(difluoromethylene)cycIopentane-l-carboxylic acid (5), we rationally designed, synthesized, and evaluated a series of six-membered-ring analogs. Among them, 14 was identified as a new selective hOAT inactivator, which demonstrated a potency 22X greater than that of 10. Three different types of protein mass spectrometry approaches and two crystallographic approaches were employed to identify the structure of hOAT-14 and the formation of a remarkable final adduct (32') in the active site. These spectral studies reveal an enzyme complex heretofore not observed in a PLP-dependent enzyme, which has covalent bonds to two nearby residues. Crystal soaking experiments and molecular dynamics simulations were carried out to identify the structure of the active-site intermediate 27' and elucidate the order of the two covalent bonds that formed, leading to 32'. The initial covalent reaction of the activated warhead occurs with *Thr322 from the second subunit, followed by a subsequent nucleophilic attack by the catalytic residue Lys292. The turnover mechanism of 14 by hOAT was supported by a mass spectrometric analysis of metabolites and fluoride ion release experiments. This novel mechanism for hOAT with 14 will contribute to the further rational design of selective inactivators and an understanding of potential inactivation mechanisms by aminotransferases.
机译:人鸟氨酸氨基转移酶(霍披)是吡哆醛5'-磷酸(PLP) - 最近发现在通过脯氨酸和谷氨酰胺代谢途径在肝细胞癌(HCC)的代谢重新编程中起重要作用。通过化合物10的恒温选择性抑制在体内抗肿瘤活性中表现出效力。受到氨基转移酶灭失剂(LS,3S)-3-氨基-4-(二氟亚甲基)三氟戊烷-1-羧酸(5)的发现的启发,我们合作设计,合成,并评估了一系列六元环类似物。其中,将14个被鉴定为新的选择性Hoat灭失剂,其表现出高于10的效力22倍。使用三种不同类型的蛋白质质谱方法和两个晶体接种方法来鉴定Hoat-14的结构和形成活动位点中的一个显着的最终加合物(32')。这些光谱研究揭示了在PLP依赖性酶中未观察到迄今未观察到的酶复合物,其与附近的两个残留物共价键。进行了晶体浸泡实验和分子动力学模拟,以鉴定活性部位中间体27'的结构,并阐明形成的两种共价键的顺序,导致32'。活性弹头的初始共价反应发生在第二亚基的* Thr322中,然后通过催化残基Lys292进行随后的亲核侵蚀。通过对代谢物和氟离子释放实验的质谱分析支持14通过霍羊的运输机制。这种具有14的Hoat的这种新机制将有助于进一步理性的选择性灭活者设计,以及对氨基转移酶的潜在灭活机制的理解。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第21期|8193-8207|共15页
  • 作者单位

    Department of Chemistry Chemistry of Life Processes Institute Center for Molecular Innovation and Drug Discovery and Center for Developmental Therapeutics Northwestern University Evanston Illinois 60208 United States;

    Department of Molecular Biosciences Northwestern University Evanston Illinois 60208 United States P.F.D. Institute of Molecular Systems Biology ETH Zurich 8093 Zurich Switzerland;

    Department of Chemistry and Biochemistry Loyola University Chicago Chicago Illinois 60660 United States;

    Department of Chemistry Chemistry of Life Processes Institute Center for Molecular Innovation and Drug Discovery and Center for Developmental Therapeutics Northwestern University Evanston Illinois 60208 United States;

    Department of Molecular Biosciences Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry and Biochemistry Loyola University Chicago Chicago Illinois 60660 United States;

    Department of Chemistry Chemistry of Life Processes Institute Center for Molecular Innovation and Drug Discovery and Center for Developmental Therapeutics Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry Chemistry of Life Processes Institute Center for Molecular Innovation and Drug Discovery and Center for Developmental Therapeutics and Department of Molecular Biosciences Northwestern University Evanston Illinois 60208 United States Department of Pharmacology Northwestern University Chicago Illinois 60611 United States;

    Department of Chemistry Chemistry of Life Processes Institute Center for Molecular Innovation and Drug Discovery and Center for Developmental Therapeutics and Department of Molecular Biosciences Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry and Biochemistry Loyola University Chicago Chicago Illinois 60660 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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