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Requirement for Shh and Fox family genes at different stages in sweat gland development

机译:汗腺发育不同阶段对Shh和Fox家族基因的需求

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摘要

Sweat glands play a fundamental role in thermal regulation in man, but the molecular mechanism of their development remains unknown. To initiate analyses, we compared the model of Eda mutant Tabby mice, in which sweat glands were not formed, with wild-type (WT) mice. We inferred developmental stages and critical genes based on observations at seven time points spanning embryonic, postnatal and adult life. In WT footpads, sweat gland germs were detected at E17.5. The coiling of secretory portions started at postnatal day 1 (P1), and sweat gland formation was essentially completed by P5. Consistent with a controlled morphological progression, expression profiling revealed stage-specific gene expression changes. Similar to the development of hair follicles—the other major skin appendage controlled by EDA—sweat gland induction and initial progression were accompanied by Eda-dependent up-regulation of the Shh pathway. During the further development of sweat gland secretory portions, Foxa1 and Foxi1, not at all expressed in hair follicles, were progressively up-regulated in WT but not in Tabby footpads. Upon completion of WT development, Shh declined to Tabby levels, but Fox family genes remained at elevated levels in mature sweat glands. The results provide a framework for the further analysis of phased down-stream regulation of gene action, possibly by a signaling cascade, in response to Eda.
机译:汗腺在人类的热调节中起着基本作用,但是其发展的分子机制仍然未知。为了开始分析,我们将未形成汗腺的Eda突变型Tabby小鼠模型与野生型(WT)小鼠进行了比较。我们根据跨越胚胎,出生后和成年生活的七个时间点的观察推断出发育阶段和关键基因。在WT脚垫中,在E17.5处检测到汗腺细菌。分泌部分的卷曲开始于产后第1天(P1),汗腺的形成基本上由P5完成。与受控的形态学进展一致,表达谱揭示了阶段特异性基因表达的变化。类似于毛囊的发育(EDA控制的另一主要皮肤附件),汗腺的诱导和初始进程都伴随着Eda依赖性Shh途径的上调。在汗腺分泌部分的进一步发展过程中,完全没有在毛囊中表达的Foxa1和Foxi1在WT中逐渐上调,而在Tabby脚垫中则没有。 WT发育完成后,Shh降至Tabby水平,但Fox家族基因在成熟汗腺中仍处于较高水平。这些结果为进一步分析基因作用的下游调控提供了框架,可能是通过信号级联反应来响应Eda。

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