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Characterization of a novel JNK (c-Jun N-terminal kinase) inhibitory peptide

机译:新型JNK(c-Jun N-末端激酶)抑制肽的表征

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pAn improved understanding of the roles of protein kinases in intracellular signalling and disease progression has driven significant advances in protein kinase inhibitor discovery. Peptide inhibitors that target the kinase protein substrate-binding site have continued to attract attention. In the present paper, we describe a novel JNK (c-Jun N-terminal kinase) inhibitory peptide PYC71N, which inhibits JNK activity iin vitro/i towards a range of recombinant protein substrates including the transcription factors c-Jun, ATF2 (activating trancription factor 2) and Elk1, and the microtubule regulatory protein DCX (doublecortin). Analysis of cell culture studies confirmed the actions of a cell-permeable version of PYC71 to inhibit c-Jun phosphorylation during acute hyperosmotic stress. The analysis of the iin vitro/i data for the kinetics of this inhibition indicated a substrate–inhibitor complex-mediated inhibition of JNK by PYC71N. Alanine-scanning replacement studies revealed the importance of two residues (PYC71N Phesup9/sup or Phesup11/sup within an FXF motif) for JNK inhibition. The importance of these residues was confirmed through interaction studies showing that each change decreased interaction of the peptide with c-Jun. Furthermore, PYC71N interacted with both non-phosphorylated (inactive) JNK1 and the substrate c-Jun, but did not recognize active JNK1. In contrast, a previously characterized JNK-inhibitory peptide TIJIP [truncated inhibitory region of JIP (JNK-interacting protein)], showed stronger interaction with active JNK1. Competition binding analysis confirmed that PYC71N inhibited the interaction of c-Jun with JNK1. Taken together, the results of the present study define novel properties of the PYC71N peptide as well as differences from the characterized TIJIP, and highlight the value of these peptides to probe the biochemistry of JNK-mediated substrate interactions and phosphorylation./p
机译:对蛋白激酶在细胞内信号转导和疾病进展中作用的更好的理解推动了蛋白激酶抑制剂发现的重大进展。靶向激酶蛋白底物结合位点的肽抑制剂一直引起人们的关注。在本文中,我们描述了一种新型的JNK(c-Jun N末端激酶)抑制肽PYC71N,可在体外抑制iNK对包括转录因子c-Jun在内的一系列重组蛋白底物的活性。 ,ATF2(激活转录因子2)和Elk1,以及微管调节蛋白DCX(doublecortin)。细胞培养研究的分析证实了PYC71的细胞渗透性版本在急性高渗应激期间抑制c-Jun磷酸化的作用。对这种抑制动力学的体外数据分析表明,底物抑制剂复合物介导了PYC71N对JNK的抑制。丙氨酸扫描替代研究揭示了两个残基(FXF基序中的PYC71N Phe 9 或Phe 11 )对于JNK抑制的重要性。这些残基的重要性通过相互作用研究得到了证实,相互作用研究表明,每次变化都会降低肽与c-Jun的相互作用。此外,PYC71N与非磷酸化(非活性)JNK1和底物c-Jun相互作用,但不识别活性JNK1。相反,先前表征的JNK抑制肽TIJIP [JIP的截短抑制区(JNK相互作用蛋白)]显示与活性JNK1的相互作用更强。竞争结合分析证实,PYC71N抑制c-Jun与JNK1的相互作用。综上所述,本研究的结果定义了PYC71N肽的新特性以及与特征性TIJIP的差异,并突出了这些肽的价值,以探讨JNK介导的底物相互作用和磷酸化的生物化学。

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