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FAST-1和Smads在非洲爪蟾早期胚胎发育过程中激活素介导的转录调控中的作用。

The role of FAST-1 and Smads in transcriptional regulation by activin during early Xenopus embryogenesis.

作者信息

Yeo C Y, Chen X, Whitman M

机构信息

Department of Cell Biology and Graduate Program in Biological and Biomedical Sciences, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Biol Chem. 1999 Sep 10;274(37):26584-90. doi: 10.1074/jbc.274.37.26584.

Abstract

Smads are signal transducers for the transforming growth factor-beta superfamily of factors. In early Xenopus embryos, the transforming growth factor-beta member activin induces the gene Mix.2 by stimulating the formation of a multiprotein complex, activin-responsive factor (ARF). This complex contains Smad2 or Smad3, Smad4, and a novel forkhead transcription factor, FAST-1, and binds to an enhancer (activin-responsive element; ARE) that confers activin regulation of Mix.2 transcription. Both FAST-1 and Smads can bind directly to the ARE; we have investigated 1) the role of FAST-1 and Smad DNA binding sites in ARF recognition of the ARE, 2) the contributions of FAST-1 and Smad binding to ARF binding in vitro and to ARE regulation in early Xenopus embryos, 3) the extent to which different Smads can replace Smad4 in regulation of the ARE. We find that ARF binds to ARE through both FAST-1 and Smad binding sites. FAST-1 recognition of the ARE is essential both for ARF binding in vitro and activin regulation in vivo. In contrast, Smad binding of ARE is unnecessary for ARF binding or activin regulation but does enhance the binding and regulatory activity of ARF. Also, Smad3 can partially substitute for Smad4 in the regulation of the ARE. These observations elucidate how broadly expressed signal transducers (Smads) regulate a developmentally specific transcriptional response in conjunction with a temporally restricted transcription factor, FAST-1.

摘要

Smads是转化生长因子-β超家族因子的信号转导分子。在非洲爪蟾早期胚胎中,转化生长因子-β成员激活素通过刺激多蛋白复合物激活素反应因子(ARF)的形成来诱导Mix.2基因表达。该复合物包含Smad2或Smad3、Smad4以及一种新的叉头转录因子FAST-1,并与一个增强子(激活素反应元件;ARE)结合,该增强子赋予激活素对Mix.2转录的调控作用。FAST-1和Smads均可直接与ARE结合;我们研究了:1)FAST-1和Smad的DNA结合位点在ARF对ARE的识别中的作用;2)FAST-1和Smad结合对体外ARF结合以及非洲爪蟾早期胚胎中ARE调控的贡献;3)不同Smads在ARE调控中替代Smad4的程度。我们发现ARF通过FAST-1和Smad结合位点与ARE结合。FAST-1对ARE的识别对于体外ARF结合和体内激活素调控均至关重要。相比之下,Smad与ARE的结合对于ARF结合或激活素调控并非必需,但确实增强了ARF的结合和调控活性。此外,Smad3在ARE调控中可部分替代Smad4。这些观察结果阐明了广泛表达的信号转导分子(Smads)如何与时间上受限的转录因子FAST-1协同调节发育特异性转录反应。

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