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Icmt 的失活抑制致癌性 K-Ras 和 B-Raf 诱导的细胞转化。

Inactivation of Icmt inhibits transformation by oncogenic K-Ras and B-Raf.

作者信息

Bergo Martin O, Gavino Bryant J, Hong Christine, Beigneux Anne P, McMahon Martin, Casey Patrick J, Young Stephen G

机构信息

Gladstone Institute of Cardiovascular Disease, San Francisco, California 94141-9100, USA.

出版信息

J Clin Invest. 2004 Feb;113(4):539-50. doi: 10.1172/JCI18829.

Abstract

Isoprenylcysteine carboxyl methyltransferase (Icmt) methylates the carboxyl-terminal isoprenylcysteine of CAAX proteins (e.g., Ras and Rho proteins). In the case of the Ras proteins, carboxyl methylation is important for targeting of the proteins to the plasma membrane. We hypothesized that a knockout of Icmt would reduce the ability of cells to be transformed by K-Ras. Fibroblasts harboring a floxed Icmt allele and expressing activated K-Ras (K-Ras-Icmt(flx/flx)) were treated with Cre-adenovirus, producing K-Ras-Icmt(Delta/Delta) fibroblasts. Inactivation of Icmt inhibited cell growth and K-Ras-induced oncogenic transformation, both in soft agar assays and in a nude mice model. The inactivation of Icmt did not affect growth factor-stimulated phosphorylation of Erk1/2 or Akt1. However, levels of RhoA were greatly reduced as a consequence of accelerated protein turnover. In addition, there was a large Ras/Erk1/2-dependent increase in p21(Cip1), which was probably a consequence of the reduced levels of RhoA. Deletion of p21(Cip1) restored the ability of K-Ras-Icmt(Delta/Delta) fibroblasts to grow in soft agar. The effect of inactivating Icmt was not limited to the inhibition of K-Ras-induced transformation: inactivation of Icmt blocked transformation by an oncogenic form of B-Raf (V599E). These studies identify Icmt as a potential target for reducing the growth of K-Ras- and B-Raf-induced malignancies.

摘要

异戊烯基半胱氨酸羧基甲基转移酶(Icmt)可使CAAX蛋白(如Ras和Rho蛋白)的羧基末端异戊烯基半胱氨酸发生甲基化。就Ras蛋白而言,羧基甲基化对于蛋白质靶向质膜至关重要。我们推测,敲除Icmt会降低细胞被K-Ras转化的能力。用携带floxed Icmt等位基因并表达活化K-Ras的成纤维细胞(K-Ras-Icmt(flx/flx))与Cre腺病毒处理,产生K-Ras-Icmt(Delta/Delta)成纤维细胞。在软琼脂试验和裸鼠模型中,Icmt的失活均抑制细胞生长和K-Ras诱导的致癌转化。Icmt的失活不影响生长因子刺激的Erk1/2或Akt1磷酸化。然而,由于蛋白质周转加速,RhoA水平大幅降低。此外,p21(Cip1)出现大量Ras/Erk1/2依赖性增加,这可能是RhoA水平降低的结果。缺失p21(Cip1)可恢复K-Ras-Icmt(Delta/Delta)成纤维细胞在软琼脂中生长的能力。Icmt失活的作用不仅限于抑制K-Ras诱导的转化:Icmt失活还可阻断致癌形式的B-Raf(V599E)诱导的转化。这些研究确定Icmt是减少K-Ras和B-Raf诱导的恶性肿瘤生长的潜在靶点。

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