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四个 Lef/Tcf 转录因子在肺上皮祖细胞中的冗余和附加功能。

Redundant and additive functions of the four Lef/Tcf transcription factors in lung epithelial progenitors.

机构信息

Department of Pulmonary Medicine, The University of Texas MD Anderson Cancer Center, Houston, TX 77030.

Department of Orthopedics, Gifu University, 501-1194 Gifu, Japan.

出版信息

Proc Natl Acad Sci U S A. 2020 Jun 2;117(22):12182-12191. doi: 10.1073/pnas.2002082117. Epub 2020 May 15.

Abstract

In multicellular organisms, paralogs from gene duplication survive purifying selection by evolving tissue-specific expression and function. Whether this genetic redundancy is also selected for within a single cell type is unclear for multimember paralogs, as exemplified by the four obligatory Lef/Tcf transcription factors of canonical Wnt signaling, mainly due to the complex genetics involved. Using the developing mouse lung as a model system, we generate two quadruple conditional knockouts, four triple mutants, and various combinations of double mutants, showing that the four Lef/Tcf genes function redundantly in the presence of at least two Lef/Tcf paralogs, but additively upon losing additional paralogs to specify and maintain lung epithelial progenitors. Prelung-specification, pan-epithelial double knockouts have no lung phenotype; triple knockouts have varying phenotypes, including defective branching and tracheoesophageal fistulas; and the quadruple knockout barely forms a lung, resembling the mutant. Postlung-specification deletion of all four Lef/Tcf genes leads to branching defects, down-regulation of progenitor genes, premature alveolar differentiation, and derepression of gastrointestinal genes, again phenocopying the corresponding mutant. Our study supports a monotonic, positive signaling relationship between CTNNB1 and Lef/Tcf in lung epithelial progenitors as opposed to reported repressor functions of Lef/Tcf, and represents a thorough in vivo analysis of cell-type-specific genetic redundancy among the four Lef/Tcf paralogs.

摘要

在多细胞生物中,通过进化出组织特异性表达和功能,基因复制产生的同源基因可以在净化选择中存活下来。对于多成员同源基因来说,这种遗传冗余是否在单个细胞类型中也被选择,目前尚不清楚,经典 Wnt 信号通路的四个必需 Lef/Tcf 转录因子就是一个很好的例子,主要是因为涉及到复杂的遗传学。我们使用发育中的小鼠肺作为模型系统,生成了两个四重条件敲除体、四个三重突变体以及各种双突变体的组合,结果表明,在至少存在两个 Lef/Tcf 同源基因的情况下,四个 Lef/Tcf 基因在肺上皮祖细胞的特化和维持中具有冗余功能,但在失去额外的同源基因时具有累加效应。在肺前体细胞特化之前,双敲除体没有肺表型;三重敲除体具有不同的表型,包括分支缺陷和气管食管瘘;四重敲除体几乎不能形成肺,类似于 突变体。在肺特化之后,四个 Lef/Tcf 基因的缺失导致分支缺陷、祖细胞基因下调、肺泡过早分化以及胃肠道基因去抑制,再次模拟了相应的 突变体。我们的研究支持 CTNNB1 和 Lef/Tcf 在肺上皮祖细胞之间存在单调的、正向信号关系,而不是报道的 Lef/Tcf 的抑制功能,并代表了对四个 Lef/Tcf 同源基因在细胞类型特异性遗传冗余方面的全面体内分析。

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