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首页> 外文期刊>Cell structure and function >XBP1 is Critical to Protect Cells from Endoplasmic Reticulum Stress: Evidence from Site-2 Protease-deficient Chinese Hamster Ovary Cells
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XBP1 is Critical to Protect Cells from Endoplasmic Reticulum Stress: Evidence from Site-2 Protease-deficient Chinese Hamster Ovary Cells

机译:XBP1对于保护细胞免受内质网应激至关重要:来自Site-2蛋白酶缺陷的中国仓鼠卵巢细胞的证据

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References(36) Cited-By(17) XBP1 is a transcription factor downstream of IRE1, a transmembrane protein in the endoplasmic reticulum (ER) which functions as a sensor and transducer of ER stress. XBP1 mRNA is constitutively expressed at a low level as an intron-containing precursor mRNA (unspliced mRNA), which is subject to IRE1-mediated splicing reaction upon ER stress to produce the active form of XBP1, pXBP1(S). Because the XBP1 promoter carries a perfect ER stress-response element, namely, the cis-acting element responsible for the induction of ER chaperones, and XBP1 mRNA is induced in response to ER stress with a time course similar to that of ER chaperone mRNAs, it is conjectured that transcription factor ATF6, activated immediately upon ER stress, induces the transcription of not only ER chaperone genes but also of XBP1 gene, such that pXBP1(S) produced by the splicing of an increased level of XBP1 mRNA escapes from proteasome-mediated degradation. Here, we examined this notion by determining the induction of XBP1 mRNA and pXBP1(S) in mutant Chinese hamster ovary (M19) cells deficient in Site-2 protease, which executes the last step of ER stress-induced activation of ATF6. We found that the induction of XBP1 mRNA and pXBP1(S) was greatly reduced in M19 cells as compared with wild-type cells, leading to a marked reduction in the extent of induction of XBP1-target gene. M19 cells were much more sensitive to ER stress than wild-type cells. Importantly, overexpression of XBP1 unspliced mRNA in M19 cells reversed all of these phenotypes. We concluded that ATF6-mediated induction of XBP1 mRNA is important to the production of pXBP1(S), activation of XBP1-target genes, and protection of cells from ER stress.
机译:参考文献(36)Cited-By(17)XBP1是IRE1下游的转录因子,IRE1是内质网(ER)中的跨膜蛋白,可作为ER应激的传感器和传感器。 XBP1 mRNA低水平组成性表达为含内含子的前体mRNA(未剪接的mRNA),在受到内质网应激时,它会受到IRE1介导的剪接反应,从而产生XBP1的活性形式pXBP1(S)。因为XBP1启动子带有一个完美的ER应激反应元件,即负责ER伴侣诱导的顺式作用元件,并且XER1响应于ER应激而以与ER伴侣mRNA相似的时间过程被诱导,据推测,内质网应激后立即激活的转录因子ATF6不仅诱导内质网伴侣蛋白基因的转录,而且还诱导XBP1基因的转录,从而使由水平升高的XBP1 mRNA的剪接产生的pXBP1(S)从蛋白酶体中逃脱。介导的降解。在这里,我们通过确定缺乏Site-2蛋白酶的突变中国仓鼠卵巢(M19)细胞中XBP1 mRNA和pXBP1(S)的诱导来研究此概念,该突变执行ER应激诱导的ATF6激活的最后一步。我们发现,与野生型细胞相比,M19细胞中XBP1 mRNA和pXBP1(S)的诱导大大减少,从而导致XBP1靶基因的诱导程度明显降低。 M19细胞比野生型细胞对内质网应激更为敏感。重要的是,M19细胞中XBP1未剪接的mRNA的过表达逆转了所有这些表型。我们得出的结论是,ATF6介导的XBP1 mRNA的诱导对于pXBP1(S)的产生,XBP1靶基因的激活以及细胞免受内质网应激的保护很重要。

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