Ding Vanessa, Lew Qiao Jing, Chu Kai Ling, Natarajan Subaashini, Rajasegaran Vikneswari, Gurumurthy Meera, Choo Andre B H, Chao Sheng-Hao
Stem Cell Group, Bioprocessing Technology Institute, Agency for Science, Technology and Research, Singapore, Singapore.
PLoS One. 2013 Aug 20;8(8):e72823. doi: 10.1371/journal.pone.0072823. eCollection 2013.
Hexamethylene bisacetamide inducible protein 1 (HEXIM1) is best known as the inhibitor of positive transcription elongation factor b (P-TEFb), which is composed of cyclin-dependent kinase 9 (CDK9)/cyclin T1. P-TEFb is an essential regulator for the transcriptional elongation by RNA polymerase II. A genome-wide study using human embryonic stem cells shows that most mRNA synthesis is regulated at the stage of transcription elongation, suggesting a possible role for P-TEFb/HEXIM1 in the gene regulation of stem cells. In this report, we detected a marked increase in HEXIM1 protein levels in the differentiated human pluripotent stem cells (hPSCs) induced by LY294002 treatment. Since no changes in CDK9 and cyclin T1 were observed in the LY294002-treated cells, increased levels of HEXIM1 might lead to inhibition of P-TEFb activity. However, treatment with a potent P-TEFb inhibiting compound, flavopiridol, failed to induce hPSC differentiation, ruling out the possible requirement for P-TEFb kinase activity in hPSC differentiation. Conversely, differentiation was observed when hPSCs were incubated with hexamethylene bisacetamide, a HEXIM1 inducing reagent. The involvement of HEXIM1 in the regulation of hPSCs was further supported when overexpression of HEXIM1 concomitantly induced hPSC differentiation. Collectively, our study demonstrates a novel role of HEXIM1 in regulating hPSC fate through a P-TEFb-independent pathway.
六亚甲基双乙酰胺诱导蛋白1(HEXIM1)最为人所知的是它作为正转录延伸因子b(P-TEFb)的抑制剂,P-TEFb由细胞周期蛋白依赖性激酶9(CDK9)/细胞周期蛋白T1组成。P-TEFb是RNA聚合酶II转录延伸的关键调节因子。一项使用人类胚胎干细胞的全基因组研究表明,大多数mRNA合成在转录延伸阶段受到调控,这表明P-TEFb/HEXIM1在干细胞基因调控中可能发挥作用。在本报告中,我们检测到LY294002处理诱导的分化人多能干细胞(hPSC)中HEXIM1蛋白水平显著增加。由于在LY294002处理的细胞中未观察到CDK9和细胞周期蛋白T1的变化,HEXIM1水平的增加可能导致P-TEFb活性受到抑制。然而,用强效P-TEFb抑制化合物黄酮哌啶醇处理未能诱导hPSC分化,排除了hPSC分化中对P-TEFb激酶活性的可能需求。相反,当hPSC与六亚甲基双乙酰胺(一种HEXIM1诱导试剂)孵育时观察到分化。当HEXIM1过表达同时诱导hPSC分化时,进一步支持了HEXIM1参与hPSC调控。总的来说,我们的研究证明了HEXIM1在通过不依赖P-TEFb的途径调节hPSC命运中的新作用。