RhoA biological activity is dependent on prenylation but independent of specific isoprenoid modification.

Patricia A Solski, Whitney Helms, Patricia J Keely, Lishan Su, Channing J Der
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Abstract

Recent studies showed that specific isoprenoid modification may be critical for RhoB subcellular location and function. Therefore, we determined whether the function of the highly related RhoA protein is also critically dependent on specific isoprenoid modification: (a) in contrast to observations with RhoB or Ras proteins, where farnesylated and geranylgeranylated versions showed differences in subcellular location, both prenylated versions of RhoA showed the same plasma membrane and cytosolic location; (b) a farnesylated version of activated RhoA(63L) retained the same diverse functions as the normally geranylgeranylated RhoA(63L) protein, and both proteins show indistinguishable abilities to stimulate gene expression, cause growth transformation of NIH 3T3 mouse fibroblasts, to stimulate the motility of T47D human breast epithelial cells, and to block HIV-1 viral replication and gene expression; and (c) cells expressing farnesylated RhoA retained sensitivity to the growth inhibition caused by inhibition of geranylgeranyltransferase I, indicating that other proteins are critical targets for inhibitors of geranylgeranylation.

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RhoA 的生物活性依赖于前酰化,但与特定的异戊二烯修饰无关。
最近的研究表明,特定的异戊二烯修饰可能是 RhoB 亚细胞位置和功能的关键。因此,我们确定了高度相关的 RhoA 蛋白的功能是否也严重依赖于特定的异戊二烯修饰:(a) 与 RhoB 或 Ras 蛋白的观察结果不同,法尼基化和香叶基化的 RhoA 蛋白在亚细胞位置上存在差异,而两种前炔基化的 RhoA 蛋白在质膜和细胞质位置上相同;(b) 法尼基化的活化 RhoA(63L) 与正常的麦角酰化 RhoA(63L) 蛋白具有相同的多种功能,两种蛋白在刺激基因表达、引起 NIH 3T3 小鼠成纤维细胞的生长转化、刺激 T47D 人乳腺上皮细胞的运动以及阻断 HIV-1 病毒复制和基因表达方面的能力没有区别;(c) 表达法尼基化 RhoA 的细胞对抑制香叶基转移酶 I 所导致的生长抑制保持敏感性,这表明其他蛋白质是香叶基转移抑制剂的关键靶标。
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