首页> 外文期刊>Journal of the American Chemical Society >Conformationally locked isostere of phosphoSer-cis-Pro inhibits Pin1 23-fold better than phosphoSer-trans-Pro isostere
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Conformationally locked isostere of phosphoSer-cis-Pro inhibits Pin1 23-fold better than phosphoSer-trans-Pro isostere

机译:磷酸化Ser-cis-Pro的构象锁定等排物比磷酸化Ser-trans-Pro等排物更好地抑制Pin1 23倍

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摘要

Stereoisomeric cis and trans substrate analogues for Pint were designed and synthesized. The central phosphoSer-Pro core of the Pin1 substrate was replaced by cis and trans amide isosteres in Ac-Phe-Phe-pser-Psi[(Z and E)CH=C]-Pro-Arg-NH2, 1 and 2, peptidomimetics. They were synthesized on solid phase in 17% yield for the cis analogue 1, and 16% yield for the trans analogue 2. A second trans amide isostere with a C-terminal N-methylamide 3 was synthesized in 7% yield. The protease-coupled Pint assay showed that all three compounds inhibited the Pint peptidyl-prolyl isomerase (PPlase) enzymatic activity. The cis isostere 1 was 23 times more potent (K-i = 1.74 +/- 0.08 muM) than its trans counterpart 2 (K-i = 40 +/- 2 muM) in competitive inhibition of Pint. These results suggest that the catalytic site of Pin1 binds cis substrates more tightly in aqueous solution. Antiproliferative activity toward the A2780 human ovarian cancer cell line by the cis and trans analogues correlates with Pint inhibition results.
机译:设计并合成了品脱的立体异构体顺式和反式底物类似物。 Pin1底物的中央phosphoSer-Pro核心被Ac-Phe-Phe-pser-Psi [(Z和E)CH = C] -Pro-Arg-NH2、1和2,拟肽模拟物中的顺式和反酰胺异构体取代。它们在固相上以顺式类似物1的产率为17%,以反式类似物2的产率为16%合成。具有C-末端N-甲基酰胺3的第二种反酰胺等排物以7%的产率合成。蛋白酶偶联的Pint分析表明,所有三种化合物均抑制Pint肽基-脯氨酰异构酶(PPlase)的酶促活性。在竞争性抑制Pint方面,顺式等位基因1的效价(K-i = 1.74 +/- 0.08μM)是其反式对应物2(K-i = 40 +/- 2μM)的23倍。这些结果表明,Pin1的催化位点在水溶液中更紧密地结合顺式底物。顺式和反式类似物对A2780人卵巢癌细胞系的抗增殖活性与Pint抑制结果相关。

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