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Loss of CARM1 is linked to reduced HuR function in replicative senescence

机译:CARM1的丢失与复制性衰老过程中的HuR功能降低有关

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The co-activator-associated arginine methyltransferase 1 (CARM1) catalyzes the methylation of HuR. However, the functional impact of this modification is not fully understood. Here, we investigated the influence of HuR methylation by CARM1 upon the turnover of HuR target mRNAs encoding senescence-regulatory proteins. Changing the methylation status of HuR in HeLa cells by either silencing CARM1 or mutating the major methylation site (R217K) greatly diminished the effect of HuR in regulating the turnover of mRNAs encoding cyclin A, cyclin B1, c-fos, SIRT1, and p16. Although knockdown of CARM1 or HuR individually influenced the expression of cyclin A, cyclin B1, c-fos, SIRT1, and p16, joint knockdown of both CARM1 and HuR did not show further effect. Methylation by CARM1 enhanced the association of HuR with the 3′UTR of p16 mRNA, but not with the 3′UTR of cyclin A, cyclin B1, c-fos, or SIRT1 mRNAs. In senescent human diploid fibroblasts (HDFs), reduced CARM1 was accompanied by reduced HuR methylation. In addition, knockdown of CARM1 or mutation of the major methylation site of HuR in HDF markedly impaired the ability of HuR to regulate the expression of cyclin A, cyclin B1, c-fos, SIRT1, and p16 as well to maintain a proliferative phenotype. CARM1 represses replicative senescence by methylating HuR and thereby enhancing HuR’s ability to regulate the turnover of cyclin A, cyclin B1, c-fos, SIRT1, and p16 mRNAs.
机译:辅助激活剂相关的精氨酸甲基转移酶1(CARM1)催化HuR的甲基化。但是,此修改的功能影响尚不完全清楚。在这里,我们调查了由CARM1引起的HuR甲基化对编码衰老调节蛋白的HuR目标mRNA转换的影响。通过沉默CARM1或突变主要甲基化位点(R217K)来改变HeLa细胞中HuR的甲基化状态,大大降低了HuR在调节编码细胞周期蛋白A,细胞周期蛋白B1,c-fos,SIRT1和p16的mRNA转换中的作用。尽管敲低CARM1或HuR分别影响细胞周期蛋白A,细胞周期蛋白B1,c-fos,SIRT1和p16的表达,但联合敲低CARM1和HuR均未显示进一步的作用。 CARM1的甲基化增强了HuR与p16 mRNA的3'UTR的结合,但与细胞周期蛋白A,细胞周期蛋白B1,c-fos或SIRT1 mRNA的3'UTR的结合没有增强。在衰老的人类二倍体成纤维细胞(HDFs)中,减少的CARM1伴随着减少的HuR甲基化。此外,敲低CARM1或HDF中HuR的主要甲基化位点的突变显着削弱了HuR调节细胞周期蛋白A,细胞周期蛋白B1,c-fos,SIRT1和p16的表达以及维持增殖表型的能力。 CARM1通过使HuR甲基化来抑制复制衰老,从而增强HuR调节细胞周期蛋白A,细胞周期蛋白B1,c-fos,SIRT1和p16 mRNA转换的能力。

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