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Hoxa5 和 Hoxb5 基因在肺形态发生过程中的部分功能冗余。

Partial functional redundancy between Hoxa5 and Hoxb5 paralog genes during lung morphogenesis.

机构信息

Centre de recherche en cancérologie de l'Université Laval, Centre Hospitalier Universitaire de Québec, L'Hôtel-Dieu de Québec, Québec, Canada.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2013 Jun 15;304(12):L817-30. doi: 10.1152/ajplung.00006.2013. Epub 2013 Apr 12.

Abstract

Hox genes encode transcription factors governing complex developmental processes in several organs. A subset of Hox genes are expressed in the developing lung. Except for Hoxa5, the lack of overt lung phenotype in single mutants suggests that Hox genes may not play a predominant role in lung ontogeny or that functional redundancy may mask anomalies. In the Hox5 paralog group, both Hoxa5 and Hoxb5 genes are expressed in the lung mesenchyme whereas Hoxa5 is also expressed in the tracheal mesenchyme. Herein, we generated Hoxa5;Hoxb5 compound mutant mice to evaluate the relative contribution of each gene to lung development. Hoxa5;Hoxb5 mutants carrying the four mutated alleles displayed an aggravated lung phenotype, resulting in the death of the mutant pups at birth. Characterization of the phenotype highlighted the role of Hoxb5 in lung formation, the latter being involved in branching morphogenesis, goblet cell specification, and postnatal air space structure, revealing partial functional redundancy with Hoxa5. However, the Hoxb5 lung phenotypes were less severe than those seen in Hoxa5 mutants, likely because of Hoxa5 compensation. New specific roles for Hoxa5 were also unveiled, demonstrating the extensive contribution of Hoxa5 to the developing respiratory system. The exclusive expression of Hoxa5 in the trachea and the phrenic motor column likely underlies the Hoxa5-specific trachea and diaphragm phenotypes. Altogether, our observations establish that the Hoxa5 and Hoxb5 paralog genes shared some functions during lung morphogenesis, Hoxa5 playing a predominant role.

摘要

Hox 基因编码转录因子,在多个器官的复杂发育过程中起调控作用。一小部分 Hox 基因在发育中的肺中表达。除了 Hoxa5 之外,单个突变体缺乏明显的肺表型表明,Hox 基因可能在肺发生中不起主要作用,或者功能冗余可能掩盖了异常。在 Hox5 基因的同源基因群中,Hoxa5 和 Hoxb5 基因都在肺间质中表达,而 Hoxa5 也在气管间质中表达。在此,我们构建了 Hoxa5;Hoxb5 复合突变小鼠,以评估每个基因对肺发育的相对贡献。携带四个突变等位基因的 Hoxa5;Hoxb5 突变体表现出加重的肺表型,导致突变幼仔在出生时死亡。表型特征突出了 Hoxb5 在肺形成中的作用,后者参与分支形态发生、杯状细胞特化和出生后空气腔结构,揭示了与 Hoxa5 的部分功能冗余。然而,Hoxb5 的肺表型比 Hoxa5 突变体的表型要轻,这可能是因为 Hoxa5 的代偿作用。Hoxa5 的新特定作用也被揭示出来,证明了 Hoxa5 对发育中呼吸系统的广泛贡献。Hoxa5 仅在气管和膈神经运动柱中表达,可能是 Hoxa5 特有的气管和膈肌表型的基础。总之,我们的观察结果表明,Hoxa5 和 Hoxb5 基因的同源基因在肺形态发生过程中具有一些共同的功能,Hoxa5 起主要作用。

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