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Hoxa4/Hoxa5基因座处的转录干扰:正确的Hoxa5表达对轴向骨骼正常特化的重要性。

Transcriptional interferences at the Hoxa4/Hoxa5 locus: importance of correct Hoxa5 expression for the proper specification of the axial skeleton.

作者信息

Aubin J, Lemieux M, Tremblay M, Behringer R R, Jeannotte L

机构信息

Centre de recherche en cancérologie de l'Université Laval, Centre Hospitalier Universitaire de Québec, Qc, Canada.

出版信息

Dev Dyn. 1998 May;212(1):141-56. doi: 10.1002/(SICI)1097-0177(199805)212:1<141::AID-AJA13>3.0.CO;2-A.

Abstract

We have previously described a Hoxa5 mutant mouse line in which specification of axial identity is perturbed and viability is markedly reduced. In the present study, we assay the Hoxa5 mutation in different genetic backgrounds and carry out a complete analysis of skeletal transformations. Although Hoxa5 is expressed over a large domain during embryogenesis, homeotic transformations of the axial skeleton are confined between cervical vertebra C3 and thoracic vertebra T2, which corresponds to the specific expression domain of the major Hoxa5 transcript. Loss of Hoxa5 function also affects the formation of the acromion in the appendicular skeleton. Disruption of the adjacent Hoxa4 gene leads to similar homeotic transformations of the cervicothoracic vertebrae. To discriminate the respective role of each gene, we generated transheterozygous animals carrying inactivated Hoxa4 and Hoxa5 alleles on different chromosomes. Compound heterozygous mutants exhibit homeotic transformations in the cervicothoracic transition region more reminiscent to those observed in Hoxa5 homozygous mutants. Although the Hoxa5 mutation does not significantly affect Hoxa4 expression, the pattern of Hoxa5 expression is impaired in cis by the Hoxa4 mutation, specifically in the cervicothoracic region of the prevertebral column. The expression of Hoxa5 in this particular domain is also perturbed by the Hoxa5 mutation itself, raising the possibility of regional autoregulation. Altogether, these results demonstrate the crucial role of Hoxa5 in the specification of the cervical and upper thoracic region of the skeleton and establish the importance of its correct expression for the proper patterning of the embryo.

摘要

我们之前描述过一种Hoxa5突变小鼠品系,其中轴身份的特化受到干扰,生存能力显著降低。在本研究中,我们在不同的遗传背景下检测了Hoxa5突变,并对骨骼转化进行了全面分析。尽管Hoxa5在胚胎发育过程中在一个大的区域表达,但轴骨骼的同源转化局限于颈椎C3和胸椎T2之间,这与主要Hoxa5转录本的特定表达区域相对应。Hoxa5功能的丧失也会影响附肢骨骼中肩峰的形成。相邻的Hoxa4基因的破坏会导致类似的颈胸椎同源转化。为了区分每个基因各自的作用,我们在不同染色体上产生了携带失活的Hoxa4和Hoxa5等位基因的反式杂合动物。复合杂合突变体在颈胸过渡区域表现出同源转化,更类似于在Hoxa5纯合突变体中观察到的情况。尽管Hoxa5突变对Hoxa4表达没有显著影响,但Hoxa4突变在顺式中损害了Hoxa5的表达模式,特别是在椎前柱的颈胸区域。Hoxa5在这个特定区域的表达也受到Hoxa5突变本身的干扰,这增加了区域自动调节的可能性。总之,这些结果证明了Hoxa5在骨骼颈椎和上胸椎区域特化中的关键作用,并确立了其正确表达对胚胎正常模式形成的重要性。

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