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Inhibition of isoprenylcysteine carboxyl methyltransferase: A new (old) target in oncogenesis.

机译:异戊烯基半胱氨酸羧基甲基转移酶的抑制:肿瘤发生中的一个新的(旧)目标。

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Ras GTPases and many other important regulatory proteins contain a C-terminal CaaX motif that signals the addition of an isoprenoid lipid. Following prenylation of the CaaX cysteine, the C-terminal three amino acids are proteolytically removed and the C-terminal prenylcysteine is methylated by the CaaX methyltransferase, Icmt. Although prenyl groups act as membrane anchors, the role of prenylcysteine methylation is not well understood. This modification aids in membrane association by making the C-terminus more hydrophobic, but it can also affect the stability of substrate proteins. Additionally, carboxylmethylation may be important in specific protein-protein interactions, and regulation of this event may add another level of control to signaling pathways.; Carboxyl methylation of Ras is clearly important for proper plasma membrane localization and function. Cellular methylation is inhibited by S-adenosylhomocysteine (AdoHcy), a product of methylation reactions that utilize S-adenosylmethionine as a methyl donor. Because AdoHcy is elevated following treatment with the classic chemotherapy drug methotrexate, we investigated the impact of methotrexate treatment on Icmt-catalyzed methylation. Following methotrexate treatment of DKOB8 cells, Ras methylation is decreased by almost 90%. This hypomethylation is accompanied by a mislocalization of Ras to the cytosol and a four-fold decrease in the activation of downstream effectors. Additionally, cells lacking Icmt are highly resistant to methotrexate. While cells expressing Icmt are inhibited by methotrexate, stable expression of myristoylated H-Ras, which does not require carboxyl methylation for membrane attachment, confers resistance to methotrexate. These results suggest that inhibition of Icmt is a critical component of the anti proliferative effect of methotrexate.; Much research on the importance of Icmt-catalyzed methylation in biology has relied upon relatively non-specific inhibitors that clearly have pleiotropic effects on cells. Recent work from our lab has identified a small molecule inhibitor that exhibits higher specificity toward Icmt. This indole-based compound, termed 9J20, inhibits the growth of cells in an Icmt-dependent manner. Treatment with 9J20 decreases Ras carboxylmethylation, causes a dose dependent mislocalization of Ras and inhibits signaling through Ras pathways. Finally, 9J20 decreases anchorage dependent growth at concentrations that only marginally affect cell growth. Together with the finding that methotrexate targets Icmt, these results suggest that small molecule inhibitors of Icmt may be effective as cancer chemotherapeutics.
机译:Ras GTPases和许多其他重要的调节蛋白都包含一个C端CaaX基序,该基序表明添加了类异戊二烯脂质。 CaaX半胱氨酸异戊二烯化后,C端三个氨基酸被蛋白水解去除,C端异戊烯基半胱氨酸被CaaX甲基转移酶Icmt甲基化。尽管异戊二烯基团起着膜锚的作用,但异戊二烯半胱氨酸甲基化的作用尚不十分清楚。这种修饰通过使C末端更疏水来帮助膜缔合,但它也可能影响底物蛋白的稳定性。另外,羧甲基化可能在特定的蛋白质-蛋白质相互作用中很重要,对该事件的调节可能会增加对信号通路的控制水平。 Ras的羧甲基化对于适当的质膜定位和功能显然很重要。细胞甲基化受到S-腺苷同型半胱氨酸(AdoHcy)的抑制,后者是利用S-腺苷甲硫氨酸作为甲基供体的甲基化反应产物。由于经典化疗药物甲氨蝶呤治疗后AdoHcy升高,因此我们研究了甲氨蝶呤治疗对Icmt催化甲基化的影响。氨甲蝶呤处理DKOB8细胞后,Ras甲基化降低了近90%。这种低甲基化伴随着Ras在胞质溶胶中的定位错误和下游效应子激活的四倍下降。此外,缺乏Icmt的细胞对甲氨蝶呤具有高度抗性。尽管表达Icmt的细胞被甲氨蝶呤抑制,但不需要羧甲基化的膜附着的肉豆蔻酰化H-Ras的稳定表达赋予了对甲氨蝶呤的抗性。这些结果表明抑制Icmt是氨甲蝶呤抗增殖作用的关键组成部分。关于Icmt催化的甲基化在生物学中的重要性的许多研究都依赖于相对非特异性的抑制剂,这些抑制剂显然对细胞具有多效性作用。我们实验室的最新工作已经确定了一种对Icmt表现出更高特异性的小分子抑制剂。这种基于吲哚的化合物称为9J20,以Icmt依赖性方式抑制细胞的生长。 9J20的治疗可降低Ras羧甲基化,引起Ras的剂量依赖性错位,并抑制通过Ras途径的信号传导。最后,9J20在仅略微影响细胞生长的浓度下降低了锚定依赖性生长。连同甲氨蝶呤靶向Icmt的发现一起,这些结果表明,Icmt的小分子抑制剂可作为癌症化学治疗剂有效。

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