首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >v-K-ras leads to preferential farnesylation of p21ras in FRTL-5 cells: Multiple interference with the isoprenoid pathway
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v-K-ras leads to preferential farnesylation of p21ras in FRTL-5 cells: Multiple interference with the isoprenoid pathway

机译:v-K-ras导致FRTL-5细胞中p21ras的优先法尼基化:对类异戊二烯途径的多重干扰

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摘要

The isoprenoid pathway in FRTL-5 thyroid cells was found to be deeply altered on transformation with v-K-ras. A dramatic overall reduction of protein prenylation was found in v-K-ras-transformed cells in comparison with the parent FRTL-5 cells, as shown by labeling cells with [3H]mevalonic acid. This phenomenon was accompanied by a relative increase of p21ras farnesylation and by a decrease of the ratio between the amounts of geranylgeraniol and farnesol bound to prenylated proteins. Analysis of protein prenylation in FRTL-5 cells transformed by a temperature-sensitive mutant of the v-K-ras oncogene indicated that these variations represent an early and specific marker of active K-ras. Conversely, FRTL-5 cells transformed with Harvey-ras showed a pattern of [3H]-mevalonate (MVA)-labeled proteins similar to that of nontransformed cells. The K-ras oncogene activation also resulted in an overall decrease of [3H]-MVA incorporation into isopentenyl-tRNA together with an increase of unprocessed [3H]-MVA and no alteration in [3H]-MVA uptake. The effects of v-K-ras on protein prenylation could be mimicked in FRTL-5 cells by lowering the concentration of exogenous [3H]-MVA whereas increasing the [3H]-MVA concentration did not revert the alterations observed in transformed cells. Accordingly, v-K-ras expression was found to: (i) down-regulate mevalonate kinase; (ii) induce farnesyl-pyrophosphate synthase expression; and (iii) augment protein farnesyltransferase but not protein geranylgeranyl-transferase-I activity. Among these events, mevalonate kinase down-regulation appeared to be related strictly to differential protein prenylation. This study represents an example of how expression of the v-K-ras oncogene, through multiple interferences with the isoprenoid metabolic pathway, may result in the preferential farnesylation of the ras oncogene product p21ras.
机译:发现在用v-K-ras转化时,FRTL-5甲状腺细胞中的类异戊二烯途径被深深地改变。与亲本FRTL-5细胞相比,在v-K-ras转化的细胞中发现了蛋白质异戊二烯基的显着减少,如用[ 3 H]甲戊酸标记细胞所示。这种现象伴随着p21 ras 法呢基化的相对增加,以及香叶基香叶醇和法呢醇与异戊二烯化蛋白结合的比例之间的比率降低。对由v-K-ras癌基因的温度敏感突变体转化的FRTL-5细胞中蛋白质异戊二烯化的分析表明,这些变异代表了活性K-ras的早期和特异性标记。相反,用Harvey-ras转化的FRTL-5细胞表现出[ 3 H]-甲羟戊酸(MVA)标记的蛋白质模式,与未转化的细胞相似。 K-ras致癌基因的激活还导致[ 3 H] -MVA掺入异戊烯基-tRNA的总体减少,以及未加工的[ 3 H] -MVA的增加并且[ 3 H] -MVA吸收没有变化。可以通过降低外源[ 3 H] -MVA的浓度而增加[ 3 H]的浓度来模拟FRTL-5细胞中vK-ras对蛋白质烯丙基化的影响。 -MVA浓度不能恢复在转化细胞中观察到的改变。因此,发现v-K-ras表达可:(i)下调甲羟戊酸激酶; (ii)诱导法呢基焦磷酸合酶表达; (iii)增强蛋白质法呢基转移酶,但不增强蛋白质香叶基香叶基转移酶-I的活性。在这些事件中,甲羟戊酸激酶的下调似乎与差异蛋白异戊二烯化严格相关。这项研究代表了一个实例,说明v-K-ras癌基因的表达如何通过对类异戊二烯代谢途径的多次干扰而导致ras癌基因产物p21 ras 的优先法尼基化。

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