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ER Stress Induces the Expression of Jpk, which Inhibits Cell Cycle Progression in F9 Teratocarcinoma Cell

机译:ER应激诱导JPK的表达,这抑制了F9畸胎瘤细胞中的细胞周期进展

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Jopock (Jpk), a transacting factor associated with the position-specific regulatory element of murine Hoxa-7, has shown to in duce cell death in both prokaryotic and eukaryotic cells when introduced and overexpressed. Since Jpk protein harbors a transmembrane domain ? and a putative endoplasmic reticulum (ER) -retention signal at the N terminus, a subcellular localization of the protein was analyzed after fusing it into the green fluorescent protein (GFP). Both N-term-(Jpk-EGFP) and C-term-fused Jpk (EGFP-Jpk) showed to be localized in the ER when analyzed under the fluorescence microscope after staining the cells with ER- and Mito-Tracker. Through deletion analysis TM turned out to be important for ER localization of Jpk. When flow cytometric analysis was performed, both cells expressing Jpk-EGFP and EGFP-Jpk led cell cycle arrest and subsequent apoptotic cell death. In order to see whether Jpk is expressed during ER stress-mediated apoptosis, F9 cells were treated with DTT, an ER stress inducer. In the presence of 4 mM of DTT, about 50% of cells died strongly expressing Jpk (sevenfold) as well as Grp78, a molecular chaperone, and CHOP-10, a well-known apop totic protein. When cells were transfected with both pEGFP-Jpk and pJpk-EGFP, cell cycle progression was interrupted compared to those of control cells. In summary, excess ER stress upregulated the expression of Jpk, which seemed to inhibit the cell cycle progression. These results al together suggest that Jpk could be a useful cell death-triggering molecule applicable for cancer therapy as well as a useful target molecule for the treatment of certain neurodegenerative diseases caused by ER stress.
机译:Jopock(JPK),与鼠Hoxa-7的特异性调节元件相关的交易因子,在引入和过表达时,在原核和真核细胞中的丧失细胞死亡中显示。由于JPK蛋白质留下跨膜结构域并且在N末端的推定内质网(ER) - 诱导信号,在将蛋白质中融合到绿色荧光蛋白(GFP)后分析蛋白质的亚细胞定位。 N-术语 - (JPK-EGFP)和C术融合JPK(EGFP-JPK)显示在用ER-和MITOTO跟踪器染色细胞后在荧光显微镜下分析时在ER中定位。通过删除分析,TM对JPK的ET本地化表示重要。当进行流式细胞术分析时,表达JPK-EGFP和EGFP-JPK LED细胞周期停滞和随后的凋亡细胞死亡。为了看看JPK是否在ER应激介导的细胞凋亡期间表达,用DTT,ER应激诱导剂处理F9细胞。在4mm的DTT的存在下,约50%的细胞死于强烈表达JPK(七倍)以及GRP78,分子伴侣和CHAC-10,众所周知的Apop Totic蛋白。当用PEGFP-JPK和PJPK-EGFP转染细胞时,与对照细胞相比,细胞周期进展中断。总之,过量的ER应激上调了JPK的表达,似乎抑制了细胞周期进展。这些结果共同认为,JPK可以是适用于癌症治疗的有用细胞死亡触发分子以及有用的靶分子,用于治疗由ER应激引起的某些神经变性疾病。

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