Uncharged isocoumarin-based inhibitors of urokinase-type plasminogen activator.

Justin J Heynekamp, Lucy A Hunsaker, Thomas A Vander Jagt, Lorraine M Deck, David L Vander Jagt
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引用次数: 19

Abstract

Background: Urokinase-type plasminogen activator (uPA) plays a major role in extracellular proteolytic events associated with tumor cell growth, migration and angiogenesis. Consequently, uPA is an attractive target for the development of small molecule active site inhibitors. Most of the recent drug development programs aimed at nonpeptidic inhibitors targeted at uPA have focused on arginino mimetics containing amidine or guanidine functional groups attached to aromatic or heterocyclic scaffolds. There is a general problem of limited bioavailability of these charged inhibitors. In the present study, uPA inhibitors were designed on an isocoumarin scaffold containing uncharged substituents.

Results: 4-Chloro-3-alkoxyisocoumarins were synthesized in which the 3-alkoxy group contained a terminal bromine; these were compared with similar inhibitors that contained a charged terminal functional group. Additional variations included functional groups attached to the seven position of the isocoumarin scaffold. N- [3-(3-Bromopropoxy)-4-chloro-1-oxo-1H-isochromen-7-yl]benzamide was identified as an uncharged lead inhibitor of uPA, Ki = 0.034 microM. Molecular modeling of human uPA with these uncharged inhibitors suggests that the bromine occupies the same position as positively charged arginino mimetic groups.

Conclusion: This study demonstrates that potent uncharged inhibitors of uPA can be developed based upon the isocoumarin scaffold. A tethered bromine in the three position and an aromatic group in the seven position are important contributors to binding. Although the aim was to develop compounds that act as mechanism-based inactivators, these inhibitors are competitive reversible inhibitors.

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不带电的异香豆素基尿激酶型纤溶酶原激活剂抑制剂。
背景:尿激酶型纤溶酶原激活剂(uPA)在与肿瘤细胞生长、迁移和血管生成相关的细胞外蛋白水解事件中起重要作用。因此,uPA是开发小分子活性位点抑制剂的一个有吸引力的靶标。最近大多数针对uPA的非肽抑制剂的药物开发项目都集中在含有脒或胍官能团的精氨酸模拟物上,这些精氨酸模拟物连接在芳香或杂环支架上。这些带电抑制剂的生物利用度有限是一个普遍的问题。在本研究中,uPA抑制剂被设计在含有不带电取代基的异香豆素支架上。结果:合成了含有末端溴的4-氯-3-烷氧基异香豆素;将这些抑制剂与含有带电末端官能团的类似抑制剂进行比较。其他变化包括附着在异香豆素支架的7个位置的官能团。N-[3-(3-溴丙氧基)-4-氯-1-氧- 1h -异色胺-7-基]苯酰胺是一种不带电的uPA铅抑制剂,Ki = 0.034微米。用这些不带电抑制剂对人类uPA进行分子模拟表明,溴与带正电的精氨酸模拟基团占据相同的位置。结论:本研究表明,基于异香豆素支架可以开发出有效的不带电的uPA抑制剂。3号位上的拴链溴和7号位上的芳基是键合的重要贡献者。虽然目的是开发化合物作为基于机制的失活剂,但这些抑制剂是竞争性可逆抑制剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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