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一种强效香叶基香叶基转移酶I抑制剂对致癌性K-Ras4B加工和信号传导的破坏作用。

Disruption of oncogenic K-Ras4B processing and signaling by a potent geranylgeranyltransferase I inhibitor.

作者信息

Lerner E C, Qian Y, Hamilton A D, Sebti S M

机构信息

Department of Pharmacology, School of Medicine, University of Pittsburgh, Pennsylvania 15261, USA.

出版信息

J Biol Chem. 1995 Nov 10;270(45):26770-3. doi: 10.1074/jbc.270.45.26770.

Abstract

Prenylation of the carboxyl-terminal CAAX (C, cysteine; A, aliphatic acid; and X, any amino acid) of Ras is required for its biological activity. We have designed a CAAX peptidomimetic, GGTI-287, which is 10 times more potent toward inhibiting geranylgeranyltransferase I (GGTase I) in vitro (IC50 = 5 nM) than our previously reported farnesyltransferase inhibitor, FTI-276. In whole cells, the methyl ester derivative of GGTI-287, GGTI-286, was 25-fold more potent (IC50 = 2 microM) than the corresponding methyl ester of FTI-276, FTI-277, toward inhibiting the processing of the geranylgeranylated protein Rap1A. Furthermore, GGTI-286 is highly selective for geranylgeranylation over farnesylation since it inhibited the processing of farnesylated H-Ras only at much higher concentrations (IC50 > 30 microM). While the processing of H-Ras was very sensitive to inhibition by FTI-277 (IC50 = 100 nM), that of K-Ras4B was highly resistant (IC50 = 10 microM). In contrast, we found the processing of K-Ras4B to be much more sensitive to GGTI-286 (IC50 = 2 microM). Furthermore, oncogenic K-Ras4B stimulation inhibited potently by GGTI-286 (IC50 = 1 microM) but weakly by FTI-277 (IC50 = 30 microM). Significant inhibition of oncogenic K-Ras4B stimulation of MAP kinase by GGTI-286 occurred at concentrations (1-3 microM) that did not inhibit oncogenic H-Ras stimulation of MAP kinase. The data presented in this study provide the first demonstration of selective disruption of oncogenic K-Ras4B processing and signaling by a CAAX peptidomimetic. The higher sensitivity of K-Ras4B toward a GGTase I inhibitor has a tremendous impact on future research directions targeting Ras in anticancer therapy.

摘要

Ras羧基末端的CAAX(C代表半胱氨酸;A代表脂肪酸;X代表任意氨基酸)异戊二烯化是其生物活性所必需的。我们设计了一种CAAX拟肽GGTI-287,它在体外抑制香叶基香叶基转移酶I(GGTase I)的效力(IC50 = 5 nM)比我们之前报道的法尼基转移酶抑制剂FTI-276高10倍。在全细胞中,GGTI-287的甲酯衍生物GGTI-286在抑制香叶基香叶基化蛋白Rap1A的加工方面比FTI-276的相应甲酯FTI-277强25倍(IC50 = 2 microM)。此外,GGTI-286对香叶基香叶基化的选择性远高于法尼基化,因为它仅在高得多的浓度(IC50 > 30 microM)下才抑制法尼基化的H-Ras的加工。虽然H-Ras的加工对FTI-277的抑制非常敏感(IC50 = 100 nM),但K-Ras4B的加工则具有高度抗性(IC50 = 10 microM)。相比之下,我们发现K-Ras4B的加工对GGTI-286更为敏感(IC50 = 2 microM)。此外,致癌性K-Ras4B刺激被GGTI-286强烈抑制(IC50 = 1 microM),但被FTI-277微弱抑制(IC50 = 30 microM)。GGTI-286在不抑制致癌性H-Ras刺激MAP激酶的浓度(1 - 3 microM)下就能显著抑制致癌性K-Ras4B刺激MAP激酶。本研究中的数据首次证明了一种CAAX拟肽对致癌性K-Ras4B加工和信号传导的选择性破坏。K-Ras4B对GGTase I抑制剂的更高敏感性对未来抗癌治疗中靶向Ras的研究方向具有巨大影响。

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