Catron K M, Zhang H, Marshall S C, Inostroza J A, Wilson J M, Abate C
Center for Advanced Biotechnology and Medicine, UMDNJ-Robert Wood Johnson Medical School, Piscataway.
Mol Cell Biol. 1995 Feb;15(2):861-71. doi: 10.1128/MCB.15.2.861.
This study investigates the transcriptional properties of Msx-1, a murine homeodomain protein which has been proposed to play a key role in regulating the differentiation and/or proliferation state of specific cell populations during embryogenesis. We show, using basal and activated transcription templates, that Msx-1 is a potent repressor of transcription and can function through both TATA-containing and TATA-less promoters. Moreover, repression in vivo and in vitro occurs in the absence of DNA-binding sites for the Msx-1 homeodomain. Utilizing a series of truncated Msx-1 polypeptides, we show that multiple regions of Msx-1 contribute to repression, and these are rich in alanine, glycine, and proline residues. When fused to a heterologous DNA-binding domain, both N- and C-terminal regions of Msx-1 retain repressor function, which is dependent upon the presence of the heterologous DNA-binding site. Moreover, a polypeptide consisting of the full-length Msx-1 fused to a heterologous DNA-binding domain is a more potent repressor than either the N- or C-terminal regions alone, and this fusion retains the ability to repress transcription in the absence of the heterologous DNA site. We further show that Msx-1 represses transcription in vitro in a purified reconstituted assay system and interacts with protein complexes composed of TBP and TFIIA (DA) and TBP, TFIIA, and TFIIB (DAB) in gel retardation assays, suggesting that the mechanism of repression is mediated through interaction(s) with a component(s) of the core transcription complex. We speculate that the repressor function of Msx-1 is critical for its proposed role in embryogenesis as a regulator of cellular differentiation.
本研究调查了Msx - 1的转录特性,Msx - 1是一种小鼠同源异型结构域蛋白,有人提出它在胚胎发育过程中调节特定细胞群体的分化和/或增殖状态方面发挥关键作用。我们使用基础转录模板和激活转录模板表明,Msx - 1是一种有效的转录抑制因子,可通过含TATA和不含TATA的启动子发挥作用。此外,在体内和体外的抑制作用在不存在Msx - 1同源异型结构域的DNA结合位点时也会发生。利用一系列截短的Msx - 1多肽,我们表明Msx - 1的多个区域对抑制作用有贡献,这些区域富含丙氨酸、甘氨酸和脯氨酸残基。当与异源DNA结合结构域融合时,Msx - 1的N端和C端区域都保留抑制功能,这取决于异源DNA结合位点的存在。此外,由全长Msx - 1与异源DNA结合结构域融合组成的多肽比单独的N端或C端区域是更有效的抑制因子,并且这种融合在不存在异源DNA位点时仍保留抑制转录的能力。我们进一步表明,Msx - 1在纯化的重组检测系统中体外抑制转录,并在凝胶阻滞分析中与由TBP和TFIIA(DA)以及TBP、TFIIA和TFIIB(DAB)组成的蛋白质复合物相互作用,这表明抑制机制是通过与核心转录复合物的一个或多个组分相互作用介导的。我们推测,Msx - 1的抑制功能对于其在胚胎发育中作为细胞分化调节因子的假定作用至关重要。