Literature DB >> 17681138

Id sustains Hes1 expression to inhibit precocious neurogenesis by releasing negative autoregulation of Hes1.

Ge Bai1, Nengyin Sheng, Zhihui Xie, Wei Bian, Yoshifumi Yokota, Robert Benezra, Ryoichiro Kageyama, Francois Guillemot, Naihe Jing.   

Abstract

Negative bHLH transcription factor Hes1 can inhibit neural stem cells (NSCs) from precocious neurogenesis through repressing proneural gene expression; therefore, sustenance of Hes1 expression is crucial for NSC pool maintenance. Here we find that Ids, the dominant-negative regulators of proneural proteins, are expressed prior to proneural genes and share an overlapping expression pattern with Hes1 in the early neural tube of chick embryos. Overexpression of Id2 in the chick hindbrain upregulates Hes1 expression and inhibits proneural gene expression and neuronal differentiation. By contrast, Hes1 expression decreases, proneural gene expression expands, and neurogenesis occurs precociously in Id1;Id3 double knockout mice and in Id1-3 RNAi-electroporated chick embryos. Mechanistic studies show that Id proteins interact directly with Hes1 and release the negative feedback autoregulation of Hes1 without interfering with its ability to affect other target genes. These results indicate that Id proteins participate in NSC maintenance through sustaining Hes1 expression in early embryos.

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Year:  2007        PMID: 17681138     DOI: 10.1016/j.devcel.2007.05.014

Source DB:  PubMed          Journal:  Dev Cell        ISSN: 1534-5807            Impact factor:   12.270


  90 in total

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5.  Lunatic fringe promotes the lateral inhibition of neurogenesis.

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6.  Protein kinase Cα signaling regulates inhibitor of DNA binding 1 in the intestinal epithelium.

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7.  Different transcription factors regulate nestin gene expression during P19 cell neural differentiation and central nervous system development.

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8.  Role for Lhx2 in corticogenesis through regulation of progenitor differentiation.

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9.  A feedback loop mediated by degradation of an inhibitor is required to initiate neuronal differentiation.

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Review 10.  Transcriptional regulation of neuronal differentiation: the epigenetic layer of complexity.

Authors:  Mary E Hamby; Volkan Coskun; Yi E Sun
Journal:  Biochim Biophys Acta       Date:  2008-07-28
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