Zhang Chuanli, Luo Haihua, Jiang Yong
Department of Pathophysiology and Key Laboratory of Proteomics of Guangdong Province, Southern Medical University, Guangzhou 510515, China.E-mail:
Nan Fang Yi Ke Da Xue Xue Bao. 2014 Jun;34(6):766-70.
To investigate the post-transcriptional regulation of dual-specificity phosphatase-1 (DUSP1) by the RNA- binding protein HuR in heat shock.
The recombinant plasmids carrying wild-type (WT) HuR or its mutants at threonine 118 were constructed and transiently transfected into NIH 3T3 cells via liposome, and the changes in the expressions of DUSP1 mRNA and protein were detected by quantitative real-time PCR and Western blotting, respectively.
Heat shock caused significantly enhanced phosphorylation of HuR at the residue T118. In 3T3 cells transfected with the plasmids carrying wild-type HuR for its over-expression showed significantly up-regulated DUSP1 mRNA and protein expressions at 24 h after transfection. Over-expression of HuR(T118A) down-regulated DUSP1 mRNA and protein expressions in cells challenged with heat shock, while HuR(T118E) over-expression significantly increased DISP1 expression at both mRNA and protein levels. After heat shock, HuR(WT) translocated from the cell nucleus to the cytoplasm to form particles. HuR(T118E) was diffusely distributed in the cytoplasm before heat shock and formed particles after heat shock. HuR(T118A) did not undergo such translocation in response to heat shock challenge.
HuR regulates DUSP1 mRNA and protein expression at the post-transcriptional level to increase its expression after heat shock by enhancing the phosphorylation HuR T118.
研究RNA结合蛋白HuR在热休克中对双特异性磷酸酶-1(DUSP1)的转录后调控作用。
构建携带野生型(WT)HuR或其苏氨酸118位点突变体的重组质粒,通过脂质体将其瞬时转染至NIH 3T3细胞,分别采用定量实时PCR和蛋白质免疫印迹法检测DUSP1 mRNA和蛋白表达的变化。
热休克导致HuR在T118位点的磷酸化显著增强。在转染携带野生型HuR过表达质粒的3T3细胞中,转染后24小时DUSP1 mRNA和蛋白表达显著上调。在热休克刺激的细胞中,HuR(T118A)过表达下调DUSP1 mRNA和蛋白表达,而HuR(T118E)过表达在mRNA和蛋白水平均显著增加DUSP1表达。热休克后,HuR(WT)从细胞核转位至细胞质形成颗粒。HuR(T118E)在热休克前弥漫分布于细胞质中,热休克后形成颗粒。HuR(T118A)在热休克刺激下未发生这种转位。
HuR在转录后水平调节DUSP1 mRNA和蛋白表达,通过增强HuR T118位点的磷酸化来增加热休克后其表达。