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甲羟戊酸合成途径作为癌症的治疗靶点。

The mevalonate synthesis pathway as a therapeutic target in cancer.

作者信息

Andela Valentine B, Pirri Michael, Schwarz Edward M, Puzas Edward J, O'Keefe Regis J, Rosenblatt Joseph D, Rosier Randy N

机构信息

Department of Orthopaedics - The Center for Musculoskeletal Research, University of Rochester Medical Center, Rochester, NY 14642, USA.

出版信息

Clin Orthop Relat Res. 2003 Oct(415 Suppl):S59-66. doi: 10.1097/01.blo.0000093846.72468.66.

Abstract

Farnesyl transferase inhibitors have emerged as bona fide anticancer agents whereas the development of geranylgeranyl transferase inhibitors has been mitigated by overt systemic toxicities. Evidence suggests that the therapeutic value of farnesyl transferase inhibitors is an indirect result of perturbations in the function of geranylgeranylated Rho proteins. To address this question, we used inhibitors of the mevalonate synthesis pathway to decrease cellular levels of farnesly and geranylgeranly isoprenoids and supplemented our culture systems with exogenous isoprenoids accordingly. Using a murine lung alveolar carcinoma cell line (Line 1), we report a dose-dependent inhibition of tumor cell proliferation, adhesion and invasiveness, in response to alendronate (3-30 micromol/L) and mevastatin (1-10 micromol/L). Supplementation of cultures with geranylgeranyl pyrophosphates (100 micromol/L) was observed to rescue drug-induced phenotypic changes whereas farnesyl pyrophosphate (100 micromol/L) had a minimal effect. Our observations highlight the mevalonate synthesis pathway as a target for anticancer therapies and suggest a greater role for geranylgeranylated proteins in cellular processes germane to cancer.

摘要

法尼基转移酶抑制剂已成为名副其实的抗癌药物,而香叶基香叶基转移酶抑制剂的开发却因明显的全身毒性而受到阻碍。有证据表明,法尼基转移酶抑制剂的治疗价值是香叶基香叶基化Rho蛋白功能紊乱的间接结果。为了解决这个问题,我们使用甲羟戊酸合成途径的抑制剂来降低细胞中法尼基和香叶基香叶基类异戊二烯的水平,并相应地在我们的培养系统中添加外源性类异戊二烯。使用小鼠肺腺癌细胞系(1号线),我们报告了阿仑膦酸盐(3 - 30微摩尔/升)和美伐他汀(1 - 10微摩尔/升)对肿瘤细胞增殖、黏附和侵袭的剂量依赖性抑制作用。观察到用香叶基香叶基焦磷酸(100微摩尔/升)补充培养物可挽救药物诱导的表型变化,而法尼基焦磷酸(100微摩尔/升)的作用最小。我们的观察结果突出了甲羟戊酸合成途径作为抗癌治疗的靶点,并表明香叶基香叶基化蛋白在与癌症相关的细胞过程中发挥更大作用。

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