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Structural Basis of Inhibition of Insulin-Regulated Aminopeptidase by a Macrocyclic Peptidic Inhibitor

机译:大环肽抑制剂胰岛素调节氨基肽酶抑制的结构基础

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Insulin-regulated aminopeptidase (IRAP) is a transmembrane zinc metallopeptidase with many important biological functions and an emerging pharmacological target. Although previous structural studies have given insight on how IRAP recognizes linear peptides, how it recognizes its physiological cyclic ligands remains elusive. Here, we report the first crystal structure of IRAP with the macrocyclic peptide inhibitor HA08 that combines structural elements from angiotensin IV and the physiological substrates oxytocin and vasopressin. The compound is found in the catalytic site in a near canonical substrate-like configuration and inhibits by a competitive mechanism. Comparison with previously solved structures of IRAP along with smallangle X-ray scattering experiments suggests that IRAP is in an open conformation in solution but undergoes a closing conformational change upon inhibitor binding. Stabilization of the closed conformation in combination with catalytic water exclusion by the tightly juxtaposed GAMEN loop is proposed as a mechanism of inhibition.
机译:胰岛素调节的氨基肽酶(IRAP)是一种跨膜锌金属肽酶,具有许多重要的生物学功能和新兴药理学靶标。尽管以前的结构研究已经了解IRAP如何识别线性肽,但它如何识别其生理环状配体仍然难以捉摸。这里,我们将IRAP的第一晶体结构与血管素IV和生理基质催产素和血管加压素结合的致癌肽抑制剂HA08。该化合物在催化位点中发现在近乎典型的底物底物配置中,并通过竞争机制抑制。与幼株X射线散射实验的先前溶解的IRAP结构的比较表明,IRAP在溶液中处于开放构象,但在抑制剂结合时经历闭合构象变化。提出了用紧密并置的域环结合催化水排斥的闭合构象的稳定作为抑制机制。

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