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鉴定 3-氨甲基-1,2-二氢-4-苯基-1-异喹啉酮:一类新型强效、选择性、口服有效的非肽类二肽基肽酶 IV 抑制剂,与 Lys554 形成独特的相互作用。

Identification of 3-aminomethyl-1,2-dihydro-4-phenyl-1-isoquinolones: a new class of potent, selective, and orally active non-peptide dipeptidyl peptidase IV inhibitors that form a unique interaction with Lys554.

机构信息

Pharmaceutical Research Division, Takeda Pharmaceutical Company Limited, 17-85 Jusohonmachi 2-Chome Yodogawa-ku, Yodogawa-ku, Osaka 532-8686, Japan.

出版信息

Bioorg Med Chem. 2011 Aug 15;19(16):4953-70. doi: 10.1016/j.bmc.2011.06.059. Epub 2011 Jun 28.

Abstract

The design, synthesis, and structure-activity relationships of a new class of potent and orally active non-peptide dipeptidyl peptidase IV (DPP-4) inhibitors, 3-aminomethyl-1,2-dihydro-4-phenyl-1-isoquinolones, are described. We hypothesized that the 4-phenyl group of the isoquinolone occupies the S1 pocket of the enzyme, the 3-aminomethyl group forms an electrostatic interaction with the S2 pocket, and the introduction of a hydrogen bond donor onto the 6- or 7-substituent provides interaction with the hydrophilic region of the enzyme. Based on this hypothesis, intensive research focused on developing new non-peptide DPP-4 inhibitors has been carried out. Among the compounds designed in this study, we identified 2-[(3-aminomethyl-2-(2-methylpropyl)-1-oxo-4-phenyl-1,2-dihydro-6-isoquinolinyl)oxy]acetamide (35a) as a potent, selective, and orally bioavailable DPP-4 inhibitor, which exhibited in vivo efficacy in diabetic model rats. Finally, X-ray crystallography of 35a in a complex with the enzyme validated our hypothesized binding mode and identified Lys554 as a new target-binding site available for DPP-4 inhibitors.

摘要

我们描述了一类新型强效、口服有效的非肽二肽基肽酶 4(DPP-4)抑制剂 3-氨甲基-1,2-二氢-4-苯基-1-异喹啉酮的设计、合成和构效关系。我们假设异喹啉酮的 4-苯基基团占据酶的 S1 口袋,3-氨甲基基团与 S2 口袋形成静电相互作用,并且在 6-或 7-取代基上引入氢键供体可以与酶的亲水区域相互作用。基于这一假设,我们进行了集中研究以开发新型非肽 DPP-4 抑制剂。在本研究设计的化合物中,我们确定了 2-[(3-氨甲基-2-(2-甲基丙基)-1-氧代-4-苯基-1,2-二氢-6-异喹啉基)氧基]乙酰胺(35a)作为一种强效、选择性和可口服生物利用的 DPP-4 抑制剂,在糖尿病模型大鼠中表现出体内疗效。最后,35a 与酶形成复合物的 X 射线晶体学证实了我们假设的结合模式,并确定了赖氨酸 554 是 DPP-4 抑制剂的新靶结合位点。

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