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Smads 与一种 Hox 蛋白在靶基因抑制中的协作。

Collaboration between Smads and a Hox protein in target gene repression.

作者信息

Walsh Christopher M, Carroll Sean B

机构信息

Howard Hughes Medical Institute and Laboratory of Molecular Biology, University of Wisconsin, 1525 Linden Drive, Madison, WI 53706, USA.

出版信息

Development. 2007 Oct;134(20):3585-92. doi: 10.1242/dev.009522. Epub 2007 Sep 12.

Abstract

Hox proteins control the differentiation of serially iterated structures in arthropods and chordates by differentially regulating many target genes. It is yet unclear to what extent Hox target gene selection is dependent upon other regulatory factors and how these interactions might affect target gene activation or repression. We find that two Smad proteins, effectors of the Drosophila Dpp/TGF-beta pathway, that are genetically required for the activation of the spalt (sal) gene in the wing, collaborate with the Hox protein Ultrabithorax (Ubx) to directly repress sal in the haltere. The repression of sal is integrated by a cis-regulatory element (CRE) through a remarkably conserved set of Smad binding sites flanked by Ubx binding sites. If the Ubx binding sites are relocated at a distance from the Smad binding sites, the proteins no longer collaborate to repress gene expression. These results support an emerging view of Hox proteins acting in collaboration with a much more diverse set of transcription factors than has generally been appreciated.

摘要

Hox蛋白通过差异调节许多靶基因来控制节肢动物和脊索动物中连续重复结构的分化。目前尚不清楚Hox靶基因的选择在多大程度上依赖于其他调控因子,以及这些相互作用如何影响靶基因的激活或抑制。我们发现,两种Smad蛋白是果蝇Dpp/TGF-β信号通路的效应器,在翅膀中激活spalt(sal)基因时具有遗传学上的必要性,它们与Hox蛋白超双胸(Ubx)协同作用,在平衡棒中直接抑制sal基因。sal基因的抑制通过一个顺式调控元件(CRE),由一组非常保守的Smad结合位点介导,两侧为Ubx结合位点。如果Ubx结合位点与Smad结合位点相隔一定距离重新定位,这些蛋白就不再协同抑制基因表达。这些结果支持了一种新出现的观点,即Hox蛋白与比通常所认识到的更为多样的转录因子协同发挥作用。

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