Germain S, Howell M, Esslemont G M, Hill C S
Laboratory of Developmental Signalling, Imperial Cancer Research Fund, WC2A 3PX London, UK.
Genes Dev. 2000 Feb 15;14(4):435-51.
We have investigated the regulation of the activin-inducible distal element (DE) of the Xenopus goosecoid promoter. The results show that paired-like homeodomain transcription factors of the Mix family, Mixer and Milk, but not Mix.1, mediate activin/TGF-beta-induced transcription through the DE by interacting with the effector domain of Smad2, thereby recruiting active Smad2/Smad4 complexes to the Mixer/Milk-binding site. We identify a short motif in the carboxyl termini of Mixer and Milk, which is demonstrated to be both necessary and sufficient for interaction with the effector domain of Smad2 and is required for mediating activin/TGF-beta-induced transcription. This motif is not confined to these homeodomain proteins, but is also present in the Smad2-interacting winged-helix proteins Xenopus Fast-1, human Fast-1, and mouse Fast-2. We demonstrate directly that transcription factors of different DNA-binding specificity recruit activated Smads to distinct promoter elements via a common mechanism. These observations, together with the temporal and spatial expression patterns of Mixer and Milk, lead us to propose a model for mesoendoderm formation in Xenopus in which these homeodomain transcription factor/Smad complexes play a role in initiating and maintaining transcription of target genes in response to endogenous activin-like signals.
我们研究了非洲爪蟾鹅膏草碱启动子中激活素诱导远端元件(DE)的调控机制。结果表明,Mix家族的配对样同源域转录因子Mixer和Milk,而非Mix.1,通过与Smad2的效应结构域相互作用,介导激活素/TGF-β诱导的通过DE的转录,从而将活性Smad2/Smad4复合物募集到Mixer/Milk结合位点。我们在Mixer和Milk的羧基末端鉴定出一个短基序,该基序被证明对于与Smad2的效应结构域相互作用既是必需的也是充分的,并且是介导激活素/TGF-β诱导转录所必需的。这个基序不仅存在于这些同源域蛋白中,也存在于与Smad2相互作用的翼状螺旋蛋白非洲爪蟾Fast-1、人类Fast-1和小鼠Fast-2中。我们直接证明了具有不同DNA结合特异性的转录因子通过一种共同机制将激活的Smads募集到不同的启动子元件上。这些观察结果,连同Mixer和Milk的时空表达模式,使我们提出了一个非洲爪蟾中内胚层形成的模型,其中这些同源域转录因子/Smad复合物在响应内源性激活素样信号启动和维持靶基因转录中发挥作用。