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The Krüppel-like zinc finger transcription factor, GLI-similar 1, is regulated by hypoxia-inducible factors via non-canonical mechanisms

机译:克虏伯样锌指转录因子GLI-like 1受缺氧诱导因子通过非经典机制调控

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GLI-similar 1 (GLIS1) is important for the reprogramming of fibroblasts into induced pluripotent stem cells (iPSCs). However, the molecular mechanisms of regulation of GLIS1 expression remain unclear. We have therefore examined GLIS1 expression in various cancer cell lines and demonstrated that GLIS1 expression was dramatically increased under hypoxic conditions. Importantly, GLIS1 expression was significantly attenuated in VHL-overexpressing renal cell carcinoma cells compared to the VHL-deficient parent control. Moreover, promoter analysis demonstrated that GLIS1 transcription was regulated by hypoxia through a hypoxia-inducible factors (HIFs)-dependent mechanism. Co-transfection experiments revealed that HIF-2α had greater potency on the GLIS1 promoter activation than HIF-1α. Subsequent studies using wild-type and mutant HIF-2α demonstrated that DNA binding activity was not necessary but TADs were critical for GLIS1 induction. Finally, co-transfection experiments indicated that HIF-2α cooperated with AP-1 family members in upregulating GLIS1 transcription. These results suggest that the hypoxic signaling pathway may play a pivotal role in regulating the reprogramming factor GLIS1, via non-canonical mechanisms involving partner transcription factor rather than by direct HIF transactivation.
机译:GLI-like 1(GLIS1)对于将成纤维细胞重编程为诱导性多能干细胞(iPSC)非常重要。但是,调节GLIS1表达的分子机制仍不清楚。因此,我们检查了各种癌细胞系中的GLIS1表达,并证明了在缺氧条件下GLIS1表达急剧增加。重要的是,与VHL缺陷型亲本对照相比,在VHL过表达的肾细胞癌细胞中GLIS1表达显着减弱。此外,启动子分析表明,GLIS1转录受缺氧诱导的缺氧诱导因子(HIFs)依赖性机制的调节。共转染实验表明,HIF-2α对GLIS1启动子的活化作用要强于HIF-1α。随后使用野生型和突变型HIF-2α进行的研究表明,DNA结合活性不是必需的,但TAD对GLIS1的诱导至关重要。最后,共转染实验表明,HIF-2α与AP-1家族成员协同上调GLIS1转录。这些结果表明,低氧信号通路可能通过涉及伴侣转录因子的非经典机制而不是直接的HIF反式激活在调节重编程因子GLIS1中起关键作用。

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