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小鼠Foxf1和Foxf2胚胎表达模式的差异与其独特的突变表型相匹配。

Differences in the embryonic expression patterns of mouse Foxf1 and -2 match their distinct mutant phenotypes.

作者信息

Ormestad Mattias, Astorga Jeanette, Carlsson Peter

机构信息

Department of Cell and Molecular Biology, Göteborg University, Göteborg, Sweden.

出版信息

Dev Dyn. 2004 Feb;229(2):328-33. doi: 10.1002/dvdy.10426.

DOI:10.1002/dvdy.10426
PMID:14745957
Abstract

Murine genes encoding the forkhead transcription factors Foxf1 and -2 are both expressed in derivatives of the splanchnic mesoderm, i.e., the mesenchyme of organs derived from the primitive gut. In addition, Foxf2 is also expressed in limbs and the central nervous system. Targeted mutagenesis of Foxf1 and -2 suggests that Foxf1 is the more important of the two mammalian FoxF genes with early embryonic lethality of null embryos and a haploinsufficiency phenotype affecting foregut-derived organs. In contrast, the only reported defect in Foxf2 null embryos is cleft palate. To investigate if the differences in mutant phenotype can be attributed to nonoverlapping expression patterns or if distinct functions of the encoded proteins have to be inferred, we analyzed the early embryonic expression of Foxf2 and compared it with that of the better investigated Foxf1. We find that in the early embryo, Foxf1 is completely dominating-in terms of expression-in extraembryonic and lateral plate mesoderm, consistent with the malformations and early lethality of Foxf1 null mutants. Along the developing gut, Foxf1 is highly expressed throughout, whereas Foxf2 expression is concentrated to the posterior part-fitting the foregut haploinsufficiency phenotypes of Foxf1 mutants. Foxf2, on the other hand, is more prominent than Foxf1 in mesenchyme around the oral cavity, as would be predicted from the cleft palate phenotype. The differences in expression pattern also highlight areas where defects should be sought for in the Foxf2 mutant, for example limbs, the posterior gut, genitalia, and derivatives of the neural crest mesenchyme.

摘要

编码叉头转录因子Foxf1和Foxf2的小鼠基因均在内脏中胚层的衍生物中表达,即源自原始肠道的器官间充质。此外,Foxf2也在四肢和中枢神经系统中表达。对Foxf1和Foxf2进行靶向诱变表明,在这两个哺乳动物FoxF基因中,Foxf1更为重要,纯合缺失胚胎具有早期胚胎致死性,且半合子不足表型会影响前肠衍生器官。相比之下,Foxf2纯合缺失胚胎中唯一报道的缺陷是腭裂。为了研究突变体表型的差异是可归因于非重叠的表达模式,还是必须推断编码蛋白具有不同功能,我们分析了Foxf2的早期胚胎表达,并将其与研究更深入的Foxf1的表达进行比较。我们发现在早期胚胎中,就表达而言,Foxf1在前胚外和侧板中胚层中完全占主导地位,这与Foxf1纯合缺失突变体的畸形和早期致死性一致。沿着发育中的肠道,Foxf1全程高表达,而Foxf2的表达集中在后部,这与Foxf1突变体的前肠半合子不足表型相符。另一方面,正如腭裂表型所预测的那样,Foxf2在口腔周围的间充质中比Foxf1更突出。表达模式的差异还突出了在Foxf2突变体中应寻找缺陷的区域,例如四肢、后肠、生殖器以及神经嵴间充质的衍生物。

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