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Smad4的转录激活活性:SMAD异源寡聚化及相关反式激活因子增强作用的角色

Transcriptional activating activity of Smad4: roles of SMAD hetero-oligomerization and enhancement by an associating transactivator.

作者信息

Shioda T, Lechleider R J, Dunwoodie S L, Li H, Yahata T, de Caestecker M P, Fenner M H, Roberts A B, Isselbacher K J

机构信息

Laboratory of Tumor Biology, Massachusetts General Hospital Cancer Center, Massachusetts General Hospital-East, Charlestown, MA 02129-2060, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Aug 18;95(17):9785-90. doi: 10.1073/pnas.95.17.9785.

Abstract

Smad4 plays a pivotal role in signal transduction of the transforming growth factor beta superfamily cytokines by mediating transcriptional activation of target genes. Hetero-oligomerization of Smad4 with the pathway-restricted SMAD proteins is essential for Smad4-mediated transcription. We provide evidence that SMAD hetero-oligomerization is directly required for the Smad4 C-terminal domain [Smad4(C)] to show its transcriptional transactivating activity; this requirement obtains even when Smad4(C) is recruited to promoters by heterologous DNA-binding domains and in the absence of the inhibitory Smad4 N-terminal domain. Defined mutations of GAL4 DNA-binding domain fusion of Smad4(C) that disrupt SMAD hetero-oligomerization suppressed transcriptional activation. Importantly, we found that an orphan transcriptional activator MSG1, a nuclear protein that has strong transactivating activity but apparently lacks DNA-binding activity, functionally interacted with Smad4 and enhanced transcription mediated by GAL4 DNA-binding domain-Smad4(C) and full-length Smad4. Transcriptional enhancement by MSG1 depended on transforming growth factor beta signaling and was suppressed by Smad4(C) mutations disrupting SMAD hetero-oligomerization or by the presence of Smad4 N-terminal domain. Furthermore, Smad4(C) did not show any detectable transactivating activity in yeast when fused to heterologous DNA-binding domains. These results demonstrate additional roles of SMAD hetero-oligomerization in Smad4-mediated transcriptional activation. They also suggest that the transcriptional-activating activity observed in the presence of Smad4 in mammalian cells may be derived, at least in part, from endogenously expressed separate transcriptional activators, such as MSG1.

摘要

Smad4通过介导靶基因的转录激活,在转化生长因子β超家族细胞因子的信号转导中起关键作用。Smad4与通路特异性SMAD蛋白的异源寡聚化对于Smad4介导的转录至关重要。我们提供的证据表明,Smad4 C末端结构域[Smad4(C)]要展现其转录反式激活活性,直接需要SMAD异源寡聚化;即使Smad4(C)通过异源DNA结合结构域被招募到启动子上,且在没有抑制性Smad4 N末端结构域的情况下,这种需求依然存在。破坏SMAD异源寡聚化的Smad4(C)的GAL4 DNA结合结构域融合体的特定突变抑制了转录激活。重要的是,我们发现一种孤儿转录激活因子MSG1,一种具有强反式激活活性但明显缺乏DNA结合活性的核蛋白,在功能上与Smad4相互作用,并增强了由GAL4 DNA结合结构域-Smad4(C)和全长Smad4介导的转录。MSG1介导的转录增强依赖于转化生长因子β信号传导,并被破坏SMAD异源寡聚化的Smad4(C)突变或Smad4 N末端结构域的存在所抑制。此外,当与异源DNA结合结构域融合时,Smad4(C)在酵母中未显示任何可检测到的反式激活活性。这些结果证明了SMAD异源寡聚化在Smad4介导的转录激活中的额外作用。它们还表明,在哺乳动物细胞中存在Smad4时观察到的转录激活活性可能至少部分源自内源性表达的单独转录激活因子,如MSG1。

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