Ding Bo, Liu Chuan-ju, Huang Yan, Yu Jin, Kong Weihua, Lengyel Peter
Department of Molecular Biophysics and Biochemistry, Yale University, 333 Cedar Street, New Haven, CT 06520-8024, USA.
J Biol Chem. 2006 May 26;281(21):14893-906. doi: 10.1074/jbc.M511748200. Epub 2006 Mar 22.
We reported in the accompanying article (Ding, B., Liu, C., Huang, Y., Hickey, R. P., Yu, J., Kong, W., and Lengyel, P. (2006) J. Biol. Chem. 281, 14882-14892) that (i) the p204 protein is required for the differentiation of murine P19 embryonal carcinoma stem cells to beating cardiac myocytes, and (ii) the expression of p204 in the differentiating P19 cells is synergistically transactivated by the cardiac transcription factors Gata4, Nkx2.5, and Tbx5. Here we report that endogenous or ectopic inhibitor of differentiation (Id) proteins inhibited the differentiation of P19 cells to myocytes. This was in consequence of the binding of Id1, Id2, or Id3 protein to the Gata4 and Nkx2.5 proteins and the resulting inhibitions (i) of the binding of these transcription factors to each other and to DNA and (ii) of their synergistic transactivation of the expression of various genes, including atrial natriuretic factor and Ifi204 (encoding p204). p204 overcame this inhibition by Id proteins in consequence of (i) binding and sequestering Id proteins, (ii) accelerating their ubiquitination and degradation by proteasomes, and (iii) decreasing the level of Id proteins in the nucleus by increasing their translocation from the nucleus to the cytoplasm. Points (ii) and (iii) depended on the presence of the nuclear export signal in p204. In the course of the differentiation, Gata4, Nkx2.5, and p204 were components of a positive feedback loop. This loop arose in consequence of it that p204 overcame the inhibition of the synergistic activity of Gata4 and Nkx2.5 by the Id proteins.
我们在随附文章中(丁,B.,刘,C.,黄,Y.,希基,R.P.,于,J.,孔,W.,和伦吉尔,P.(2006年)《生物化学杂志》281卷,14882 - 14892页)报道:(i)p204蛋白是小鼠P19胚胎癌细胞分化为跳动心肌细胞所必需的;(ii)在分化的P19细胞中,p204的表达由心脏转录因子Gata4、Nkx2.5和Tbx5协同反式激活。在此我们报道,内源性或异位的分化抑制因子(Id)蛋白抑制P19细胞向心肌细胞的分化。这是由于Id1、Id2或Id3蛋白与Gata4和Nkx2.5蛋白结合,以及由此产生的抑制作用:(i)这些转录因子彼此之间以及与DNA的结合;(ii)它们对包括心钠素和Ifi204(编码p204)在内的各种基因表达的协同反式激活。p204克服了Id蛋白的这种抑制作用,原因如下:(i)结合并隔离Id蛋白;(ii)通过蛋白酶体加速其泛素化和降解;(iii)通过增加Id蛋白从细胞核向细胞质的转运,降低细胞核中Id蛋白的水平。要点(ii)和(iii)取决于p204中核输出信号的存在。在分化过程中,Gata4、Nkx2.5和p204是一个正反馈环的组成部分。这个环的出现是因为p204克服了Id蛋白对Gata4和Nkx2.5协同活性的抑制作用。