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Hes7:一种由Notch调节并在前体节中胚层表达的bHLH型抑制基因。

Hes7: a bHLH-type repressor gene regulated by Notch and expressed in the presomitic mesoderm.

作者信息

Bessho Y, Miyoshi G, Sakata R, Kageyama R

机构信息

Institute for Virus Research, Kyoto University, Sakyo-ku, Kyoto 606-8507, Japan.

出版信息

Genes Cells. 2001 Feb;6(2):175-85. doi: 10.1046/j.1365-2443.2001.00409.x.

Abstract

BACKGROUND

Whereas Notch signalling is essential for somitogenesis, mice deficient for the basic helix-loop-helix (bHLH) genes Hes1 and Hes5, downstream Notch effectors, display normal somite formation, indicating that there may be an as-yet unidentified Hes1-related bHLH gene.

RESULTS

We identified a novel bHLH gene, designated Hes7, from mouse embryos. Hes7 has a conserved bHLH domain in the amino-terminal region and the WRPW domain at the carboxy-terminal end, like Hes1. The mouse Hes7 gene is located next to Aloxe3, which is mapped to a position 37.0 cM from the centromere on chromosome 11. In a transfection analysis, Hes7 represses transcription from the N box- and E box-containing promoters. In addition, Hes7 suppresses the E47-induced transcriptional activation. Promoter analysis indicated that Hes7 expression is controlled by Notch signalling. Strikingly, Hes7 is specifically expressed in the presomitic mesoderm in a dynamic manner. We also identified two related bHLH genes from human: one is closely related to mouse Hes7 and therefore designated hHes7 and the other designated hHes4.

CONCLUSION

The structure, transcriptional activity and expression pattern in the presomitic mesoderm of Hes7 are very similar to those of Hes1, suggesting that Hes7, together with Hes1, may play a role in somite formation under the control of Notch signalling.

摘要

背景

虽然Notch信号通路对于体节发生至关重要,但作为Notch下游效应分子的碱性螺旋-环-螺旋(bHLH)基因Hes1和Hes5缺陷的小鼠却表现出正常的体节形成,这表明可能存在一个尚未被鉴定的与Hes1相关的bHLH基因。

结果

我们从小鼠胚胎中鉴定出一个新的bHLH基因,命名为Hes7。与Hes1一样,Hes7在氨基末端区域有一个保守的bHLH结构域,在羧基末端有WRPW结构域。小鼠Hes7基因位于Aloxe3旁边,Aloxe3被定位在11号染色体着丝粒37.0 cM处。在转染分析中,Hes7抑制含N盒和E盒启动子的转录。此外,Hes7抑制E47诱导的转录激活。启动子分析表明Hes7的表达受Notch信号通路控制。引人注目的是,Hes7在前体中胚层中以动态方式特异性表达。我们还从人类中鉴定出两个相关的bHLH基因:一个与小鼠Hes7密切相关,因此命名为hHes7,另一个命名为hHes4。

结论

Hes7在前体中胚层中的结构、转录活性和表达模式与Hes1非常相似,这表明Hes7可能与Hes1一起在Notch信号通路的控制下参与体节形成。

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