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Differential regulation of the TRAIL death receptors DR4 and DR5 by the signal recognition particle

机译:信号识别颗粒对TRAIL死亡受体DR4和DR5的差异调节

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TRAIL (TNF-related apoptosis-inducing ligand) death receptors DR4 and DRS facilitate the selective elimination of malignant cells through the induction of apoptosis. From previous studies the regulation of the DR4 and DR5 cell-death pathways appeared similar; nevertheless in this study we screened a library of small interfering RNA (siRNA) for genes, which when silenced, differentially affect DR4- vs. DR5-mediated apoptosis. These experiments revealed that expression of the signal recognition particle (SRP) complex is essential for apoptosis mediated by DR4, but not DR5. Selective diminution of SRP subunits by RNA interference resulted in a dramatic decrease in cell surface DR4 receptors that correlated with inhibition of DR4-dependent cell death. Conversely, SRP silencing had little influence on cell surface DR5 levels or DR5-mediated apoptosis. Although loss of SRP function in bacteria, yeast and protozoan parasites causes lethality or severe growth defects, we observed no overt phenotypes in the human cancer cells studied-even in stable cell lines with diminished expression of SRP components. The lack of severe phenotype after SRP depletion allowed us to delineate, for the first time, a mechanism for the differential regulation of the TRAIL death receptors DR4 and DR5-implicating the SRP complex as an essential component of the DR4 cell-death pathway.
机译:TRAIL(TNF相关凋亡诱导配体)死亡受体DR4和DRS通过诱导凋亡促进了恶性细胞的选择性清除。从以前的研究来看,DR4和DR5细胞死亡途径的调控似乎相似;但是,它们的调控机制却是相似的。但是,在这项研究中,我们筛选了一个小干扰RNA(siRNA)库来寻找基因,这些基因沉默后会分别影响DR4与DR5介导的细胞凋亡。这些实验表明,信号识别颗粒(SRP)复合物的表达对于DR4介导的细胞凋亡至关重要,而DR5则不是。 RNA干扰选择性减少SRP亚基导致细胞表面DR4受体的急剧减少,这与抑制DR4依赖性细胞死亡有关。相反,SRP沉默对细胞表面DR5水平或DR5介导的凋亡几乎没有影响。尽管细菌,酵母和原生动物寄生虫中SRP功能的丧失会导致致死性或严重的生长缺陷,但我们观察到的人类癌细胞中没有明显的表型,即使在稳定的细胞系中SRP成分的表达也减少了。 SRP耗竭后缺乏严重的表型,这使我们首次描述了TRAIL死亡受体DR4和DR5的差异调节机制,从而将SRP复合物作为DR4细胞死亡途径的重要组成部分。

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