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Potent macrocyclic inhibitors of insulin-regulated aminopeptidase (IRAP) by olefin ring-closing metathesis

机译:封闭环易位的胰岛素调节性氨基肽酶(IRAP)的强大环抑制剂

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摘要

Macrocyclic analogues of angiotensin IV (Ang IV, Val~1-Tyr ~2-Ile~3-His~4-Pro~5-Phe~6) targeting the insulin-regulated aminopeptidase (IRAP) have been designed, synthesized, and evaluated biologically. Replacement of His~4-Pro ~5-Phe~6 by a 2-(aminomethyl)phenylacetic acid (AMPAA) moiety and of Val1 and Ile3 by amino acids bearing olefinic side chains followed by macrocyclization provided potent IRAP inhibitors. The impact of the ring size and the type (saturated versus unsaturated), configuration, and position of the carbon-carbon bridge was assessed. The ring size generally affects the potency more than the carbon-carbon bond characteristics. Replacing Tyr~2 by β~3hTyr or Phe is accepted, while N-methylation of Tyr 2 is deleterious for activity. Removal of the carboxyl group in the C-terminal slightly reduced the potency. Inhibitors 7 (K_i = 4.1 nM) and 19 (K_i = 1.8 nM), both encompassing 14-membered ring systems connected to AMPAA, are 10-fold more potent than Ang IV and are also more selective over aminopeptidase N (AP-N). Both compounds displayed high stability against proteolysis by metallopeptidases.
机译:设计,合成和评估了靶向胰岛素调节的氨基肽酶的血管紧张素IV的大环类似物(Ang IV,Val〜1-Tyr〜2-Ile〜3-His〜4-Pro〜5-Phe〜6)生物学上。用2-(氨基甲基)苯基乙酸(AMPAA)部分取代His〜4-Pro〜5-Phe〜6,并用带有烯烃侧链的氨基酸取代Val1和Ile3,然后进行大环化,从而提供了有效的IRAP抑制剂。评估了环尺寸和类型(饱和与不饱和),构型和碳-碳桥位置的影响。环的大小通常比碳-碳键特性对效力的影响更大。可以用β〜3hTyr或Phe代替Tyr〜2,而Tyr 2的N-甲基化对活性有害。 C端羧基的去除稍微降低了效力。抑制剂7(K_i = 4.1 nM)和抑制剂19(K_i = 1.8 nM)均包含与AMPAA连接的14元环系统,其效价比Ang IV高10倍,并且对氨基肽酶N(AP-N)的选择性更高。两种化合物均显示出对金属肽酶的蛋白水解的高稳定性。

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