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发动蛋白I GTP酶活性的小分子抑制剂:二聚体酪氨酸磷酸化抑制剂的研发

Small molecule inhibitors of dynamin I GTPase activity: development of dimeric tyrphostins.

作者信息

Hill Timothy, Odell Luke R, Edwards Jennifer K, Graham Mark E, McGeachie Andrew B, Rusak Jenny, Quan Annie, Abagyan Ruben, Scott Janet L, Robinson Phillip J, McCluskey Adam

机构信息

Discipline of Chemistry, Chemistry Building, School of Environmental and Life Sciences, The University of Newcastle, Callaghan, NSW 2308, Australia.

出版信息

J Med Chem. 2005 Dec 1;48(24):7781-8. doi: 10.1021/jm040208l.

Abstract

Dynamin I is a GTPase enzyme required for endocytosis and is an excellent target for the design of potential endocytosis inhibitors. Screening of a library of tyrphostins, in our laboratory, against the GTPase activity of dynamin I gave rise to a microM potent lead, 2-cyano-3-(3,4-dihydroxyphenyl)thioacrylamide (1, IC50 70 microM). Our initial investigations suggested that only the dimeric form of 1 displayed dynamin I GTPase inhibitory activity. Subsequent synthetic iterations were based on dimeric analogues and afforded a number of small molecules, low microM potent, inhibitors of dynamin I GTPase, in particular, symmetrical analogues with a minimum of two free phenolic -OHs: catechol-acrylamide (9) (IC50= 5.1 +/- 0.6 microM), its 3,4,5-trihydroxy congener (10) (IC50= 1.7 +/- 0.2 microM), and the corresponding 3-methyl ether (11) (IC50= 9 +/- 3 microM). Increasing the length of the central alkyl spacer from ethyl to propyl (22-24) afforded essentially identical activity with IC50's of 1.7 +/- 0.2, 1.7 +/- 0.2, and 5 +/- 1 microM, respectively. No decrease in activity was noted until the introduction of a hexyl spacer. Our studies highlight the requirement for two free amido NHs with neither the mono-N-methyl (86) nor the bis-N-methyl (87) analogues inhibiting dynamin I GTPase. A similar effect was noted for the removal of the nitrile moieties. However, modest potency was observed with the corresponding ester analogues of 9-11: ethyl ester (90), propyl ester (91), and butyl ester (92), with IC50's of 42 +/- 3, 38 +/- 2, and 61 +/- 2 microM, respectively. Our studies reveal the most potent and promising dynamin I GTPase inhibitor in this series as (22), which is also known as BisT.

摘要

发动蛋白I是一种内吞作用所需的GTP酶,是设计潜在内吞抑制剂的理想靶点。在我们实验室中,针对发动蛋白I的GTP酶活性对一组酪氨酸磷酸化抑制剂库进行筛选,得到了一种微摩尔级别的有效先导化合物,即2-氰基-3-(3,4-二羟基苯基)硫代丙烯酰胺(1,IC50为70微摩尔)。我们最初的研究表明,只有1的二聚体形式表现出对发动蛋白I GTP酶的抑制活性。随后的合成迭代基于二聚体类似物,并得到了一些小分子,它们是低微摩尔级别的发动蛋白I GTP酶抑制剂,特别是具有至少两个游离酚羟基的对称类似物:儿茶酚-丙烯酰胺(9)(IC50 = 5.1±0.6微摩尔)、其3,4,5-三羟基同系物(10)(IC50 = 1.7±0.2微摩尔)以及相应的3-甲基醚(11)(IC50 = 9±3微摩尔)。将中心烷基间隔基的长度从乙基增加到丙基(22 - 24),得到的活性基本相同,IC50分别为1.7±0.2、1.7±0.

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