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TRPM7 channel inhibition exacerbates pulmonary arterial hypertension through MEK/ERK pathway

机译:TRPM7通道抑制通过MEK / ERK途径加重肺动脉高压

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摘要

Cellular senescence is an important mechanism of autonomous tumor suppression, while its consequence such as the senescence-associated secretory phenotype (SASP) may drive tumorigenesis and age-related diseases. Therefore, controlling the cell fate optimally when encountering senescence stress is helpful for anti-cancer or anti-aging treatments. To identify genes essential for senescence establishment or maintenance, we carried out a CRISPR-based screen with a deliberately designed single-guide RNA (sgRNA) library. The library comprised of about 12,000 kinds of sgRNAs targeting 1378 senescence-associated genes selected by integrating the information of literature mining, protein-protein interaction network, and differential gene expression. We successfully detected a dozen gene deficiencies potentially causing senescence bypass, and their phenotypes were further validated with a high true positive rate. RNA-seq analysis showed distinct transcriptome patterns of these bypass cells. Interestingly, in the bypass cells, the expression of SASP genes was maintained or elevated with CHEK2, HAS1, or MDK deficiency; but neutralized with MTOR, CRISPLD2, or MORF4L1 deficiency. Pathways of some age-related neurodegenerative disorders were also downregulated with MTOR, CRISPLD2, or MORF4L1 deficiency. The results demonstrated that disturbing these genes could lead to distinct cell fates as a consequence of senescence bypass, suggesting that they may play essential roles in cellular senescence>.
机译:细胞衰老是自主抑制肿瘤的重要机制,而其衰老相关的分泌表型(SASP)等结果可能会驱动肿瘤发生和与年龄有关的疾病。因此,在遇到衰老压力时最佳地控制细胞命运有助于抗癌或抗衰老治疗。为了鉴定衰老建立或维持所必需的基因,我们进行了基于CRISPR的筛选,并精心设计了单向导RNA(sgRNA)文库。该文库由大约12,000种sgRNA组成,它们通过整合文献挖掘,蛋白质-蛋白质相互作用网络和差异基因表达等信息,针对1378个与衰老相关的基因进行选择。我们成功地检测了可能导致衰老旁路的十几种基因缺陷,并以较高的真实阳性率进一步验证了它们的表型。 RNA-seq分析显示这些旁路细胞的转录组模式不同。有趣的是,在旁路细胞中,由于CHEK2,HAS1或MDK缺乏,SASP基因的表达得以维持或升高。但被MTOR,CRISPLD2或MORF4L1缺乏症中和。 MTOR,CRISPLD2或MORF4L1缺乏症也下调了一些与年龄相关的神经退行性疾病的途径。结果表明,干扰这些基因可能会导致衰老旁路,从而导致不同的细胞命运,表明它们可能在细胞衰老中发挥重要作用。>

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