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以非ATP竞争性机制抑制胰岛素受体自磷酸化的合成五肽。

Synthetic pentapeptides inhibiting autophosphorylation of insulin receptor in a non-ATP-competitive mechanism.

作者信息

Kato Masaki, Abe Mineo, Kuroda Yoshihiro, Hirose Munetaka, Nakano Minoru, Handa Tetsurou

机构信息

Graduate School of Pharmaceutical Sciences, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

J Pept Sci. 2009 May;15(5):327-36. doi: 10.1002/psc.1114.

Abstract

In an attempt to develop non-ATP-competitive inhibitors of the autophosphorylation of IR, the effects of the synthetic peptides, Ac-DIY(1158)ET-NH(2) and Ac-DY(1162)Y(1163)RK-NH(2), on the phosphorylation of IR were studied in vitro. The peptides were derived from the amino-acid sequence in the activation loop of IR. They inhibited the autophosphorylation of IR to 20.5 and 40.7%, respectively, at 4000 microM. The Asp/Asn- and Glu/Gln-substituted peptides, Ac-NIYQT-NH(2) and Ac-NYYRK-NH(2), more potently inhibited the autophosphorylation than did the corresponding parent peptides. The inhibitory potencies of the substituted peptides were decreased with increasing concentrations of ATP, indicating that these peptides employ an ATP-competitive mechanism in inhibiting the autophosphorylation of IR. In contrast, those of the parent peptides were not affected. Mass spectrometry showed that the parent peptides were phosphorylated by IR, suggesting that they interact with the catalytic loop. Moreover, docking simulations predicted that the substituted peptides would interact with the ATP-binding region of IR, whereas their parent peptides would interact with the catalytic loop of IR. Thus, Ac-DIYET-NH(2) and Ac-DYYRK-NH(2) are expected to be non-ATP-competitive inhibitors. These peptides could contribute to the development of a drug employing a novel mechanism.

摘要

为了开发非ATP竞争性的胰岛素受体(IR)自磷酸化抑制剂,研究了合成肽Ac-DIY(1158)ET-NH₂和Ac-DY(1162)Y(1163)RK-NH₂对IR磷酸化的体外作用。这些肽源自IR激活环中的氨基酸序列。在4000微摩尔浓度下,它们分别将IR的自磷酸化抑制到20.5%和40.7%。天冬氨酸/天冬酰胺和谷氨酸/谷氨酰胺取代的肽Ac-NIYQT-NH₂和Ac-NYYRK-NH₂比相应的亲本肽更有效地抑制自磷酸化。取代肽的抑制效力随着ATP浓度的增加而降低,表明这些肽在抑制IR自磷酸化时采用ATP竞争性机制。相比之下,亲本肽的抑制效力不受影响。质谱分析表明亲本肽被IR磷酸化,提示它们与催化环相互作用。此外,对接模拟预测取代肽将与IR的ATP结合区域相互作用,而它们的亲本肽将与IR的催化环相互作用。因此,预计Ac-DIYET-NH₂和Ac-DYYRK-NH₂为非ATP竞争性抑制剂。这些肽可能有助于开发一种采用新机制的药物。

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