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颗粒头样转录因子家族在小鼠发育过程中的时空表达

Spatial and temporal expression of the Grainyhead-like transcription factor family during murine development.

作者信息

Auden Alana, Caddy Jacinta, Wilanowski Tomasz, Ting Stephen B, Cunningham John M, Jane Stephen M

机构信息

Rotary Bone Marrow Research Laboratory, c/o Royal Melbourne Hospital Post Office, Grattan Street, Parkville, Vic. 3050, Australia.

出版信息

Gene Expr Patterns. 2006 Oct;6(8):964-70. doi: 10.1016/j.modgep.2006.03.011. Epub 2006 Apr 25.

Abstract

The Drosophila transcription factor Grainyhead (grh) is expressed in ectoderm-derived tissues where it regulates several key developmental events including cuticle formation, tracheal elongation and dorsal closure. Our laboratory has recently identified three novel mammalian homologues of the grh gene, Grainyhead-like 1, -2 and -3 (Grhl1-3) that rewrite the phylogeny of this family. Using gene targeting in mice, we have shown that Grhl3 is essential for neural tube closure, skin barrier formation and wound healing. Despite their extensive sequence homology, Grhl1 and Grhl2 are unable to compensate for loss of Grhl3 in these developmental processes. To explore this lack of redundancy, and to gain further insights into the functions of this gene family in mammalian development we have performed an extensive in situ hybridisation analysis. We demonstrate that, although all three Grhl genes are highly expressed in the developing epidermis, they display subtle differences in the timing and level of expression. Surprisingly, we also demonstrate differential expression patterns in non-ectoderm-derived tissues, including the heart, the lung, and the metanephric kidney. These findings expand our understanding of the unique role of Grhl3 in neurulation and epidermal morphogenesis, and provide a focus for further functional analysis of the Grhl genes during mouse embryogenesis.

摘要

果蝇转录因子颗粒头(grh)在外胚层衍生组织中表达,在这些组织中它调节几个关键的发育事件,包括表皮形成、气管伸长和背侧闭合。我们实验室最近鉴定出grh基因的三个新的哺乳动物同源物,颗粒头样1、-2和-3(Grhl1-3),它们重新构建了这个家族的系统发育。通过在小鼠中进行基因靶向,我们已经表明Grhl3对于神经管闭合、皮肤屏障形成和伤口愈合至关重要。尽管Grhl1和Grhl2具有广泛的序列同源性,但它们在这些发育过程中无法补偿Grhl3的缺失。为了探究这种冗余性的缺乏,并进一步深入了解这个基因家族在哺乳动物发育中的功能,我们进行了广泛的原位杂交分析。我们证明,尽管所有三个Grhl基因在发育中的表皮中都高度表达,但它们在表达时间和水平上存在细微差异。令人惊讶的是,我们还证明了它们在非外胚层衍生组织中的差异表达模式,包括心脏、肺和后肾。这些发现扩展了我们对Grhl3在神经胚形成和表皮形态发生中独特作用的理解,并为在小鼠胚胎发育过程中对Grhl基因进行进一步功能分析提供了重点。

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