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HoxA 基因簇在中胚层衍生物中的加性和全局功能。

Additive and global functions of HoxA cluster genes in mesoderm derivatives.

机构信息

National Research Center Frontiers in Genetics, Department of Zoology and Animal Biology, University of Geneva, Sciences III, 1211 Geneva 4, Switzerland.

出版信息

Dev Biol. 2010 May 15;341(2):488-98. doi: 10.1016/j.ydbio.2010.03.006. Epub 2010 Mar 18.

Abstract

Hox genes encode transcription factors that play a central role in the specification of regional identities along the anterior to posterior body axis. In the developing mouse embryo, Hox genes from all four genomic clusters are involved in range of developmental processes, including the patterning of skeletal structures and the formation of several organs. However, the functional redundancy observed either between paralogous genes, or among neighboring genes from the same cluster, has hampered functional analyses, in particular when synergistic, cluster-specific functions are considered. Here, we report that mutant mice lacking the entire HoxA cluster in mesodermal lineages display the expected spectrum of postnatal respiratory, cardiac and urogenital defects, previously reported for single gene mutations. Likewise, mild phenotypes are observed in both appendicular and axial skeleton. However, a striking effect was uncovered in the hematopoietic system, much stronger than that seen for Hoxa9 inactivation alone, which involves stem cells (HSCs) as well as the erythroid lineage, indicating that several Hoxa genes are necessary for normal hematopoiesis to occur. Finally, the combined deletions of Hoxa and Hoxd genes reveal abnormalities in axial elongation as well as skin morphogenesis that are likely the results of defects in epithelial-mesenchymal interactions.

摘要

Hox 基因编码转录因子,在沿身体前后轴的区域身份特化中发挥核心作用。在发育中的小鼠胚胎中,来自所有四个基因组簇的 Hox 基因参与了一系列发育过程,包括骨骼结构的模式形成和几个器官的形成。然而,观察到的功能冗余,无论是在同源基因之间,还是在同一簇的相邻基因之间,都阻碍了功能分析,特别是在考虑协同作用、簇特异性功能时。在这里,我们报告说,缺失中胚层谱系中整个 HoxA 簇的突变小鼠表现出预期的出生后呼吸、心脏和泌尿生殖缺陷谱,以前曾报道过单一基因突变。同样,在附肢和轴骨骼中也观察到轻微的表型。然而,在造血系统中发现了一个惊人的效应,比单独的 Hoxa9 失活更强烈,这涉及到干细胞(HSCs)以及红系,表明几个 Hoxa 基因对于正常造血发生是必要的。最后,Hoxa 和 Hoxd 基因的联合缺失揭示了轴向伸长和皮肤形态发生的异常,这可能是上皮-间充质相互作用缺陷的结果。

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