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首页> 外文期刊>Journal of Medicinal Chemistry >2′,6′-Dihalostyrylanilines, Pyridines, and Pyrimidines for the Inhibition of the Catalytic Subunit of Methionine S-Adenosyltransferase-2
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2′,6′-Dihalostyrylanilines, Pyridines, and Pyrimidines for the Inhibition of the Catalytic Subunit of Methionine S-Adenosyltransferase-2

机译:2',6'-二卤代苯乙烯基苯胺,吡啶和嘧啶对蛋氨酸S-腺苷转移酶2催化亚基的抑制作用

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摘要

Inhibition of the catalytic subunit of the heterodimeric methionine S-adenosyl transferase-2 (MAT2A) with fluorinated N,Ndialkylaminostilbenes (FIDAS agents) offers a potential avenue for the treatment of liver and colorectal cancers where upregulation of this enzyme occurs. A study of structure-activity relationships led to the identification of the most active compounds as those with (1) either a 2,6-difluorostyryl or 2-chloro-6-fluorostyryl subunit, (2) either an N-methylamino or N,N-dimethylamino group attached in a para orientation relative to the 2,6-dihalostyryl subunit, and (3) either an N-methylaniline or a 2-(N,N-dimethylamino)pyridine ring. These modifications led to FIDAS agents that were active in the low nanomolar range, that formed water-soluble hydrochloride salts, and that possessed the desired property of not inhibiting the human hERG potassium ion channel at concentrations at which the FIDAS agents inhibit MAT2A. The active FIDAS agents may inhibit cancer cells through alterations of methylation reactions essential for cancer cell survival and growth.
机译:氟化N,Ndi烷基氨基芪酯(FIDAS剂)对异二聚甲硫氨酸S-腺苷基转移酶2(MAT2A)催化亚基的抑制作用为这种酶上调的肝癌和结直肠癌提供了潜在的治疗途径。对结构活性关系的研究导致鉴定出最具活性的化合物为:(1)2,6-二氟苯乙烯基或2-氯-6-氟苯乙烯基亚基;(2)N-甲基氨基或N,相对于2,6-二卤代苯乙烯基亚基以对位连接的N-二甲基氨基,和(3)N-甲基苯胺或2-(N,N-二甲基氨基)吡啶环。这些修饰导致FIDAS试剂在低纳摩尔范围内具有活性,形成水溶性盐酸盐,并具有在FIDAS试剂抑制MAT2A的浓度下不抑制人hERG钾离子通道的所需特性。活性FIDAS剂可通过改变对于癌细胞存活和生长必不可少的甲基化反应来抑制癌细胞。

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