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Foxc1基因敲除小鼠无汗,并重现了人类粟丘疹性汗潴留障碍的特征。

Foxc1 Ablated Mice Are Anhidrotic and Recapitulate Features of Human Miliaria Sweat Retention Disorder.

作者信息

Cui Chang-Yi, Ishii Ryuga, Campbell Dean P, Michel Marc, Piao Yulan, Kume Tsutomu, Schlessinger David

机构信息

Laboratory of Genetics and Genomics, National Institute on Aging, National Institutes of Health, Baltimore, Maryland, USA.

Laboratory of Genetics and Genomics, National Institute on Aging, National Institutes of Health, Baltimore, Maryland, USA.

出版信息

J Invest Dermatol. 2017 Jan;137(1):38-45. doi: 10.1016/j.jid.2016.08.012. Epub 2016 Sep 1.

Abstract

Sweat glands are critical for thermoregulation. The single tubular structure of sweat glands has a lower secretory portion and an upper reabsorptive duct leading to the secretory pore in the skin. Genes that determine sweat gland structure and function are largely unidentified. Here we report that a Fox family transcription factor, Foxc1, is obligate for appreciable sweat duct activity in mice. When Foxc1 was specifically ablated in skin, sweat glands appeared mature, but the mice were severely hypohidrotic. Morphologic analysis revealed that sweat ducts were blocked by hyperkeratotic or parakeratotic plugs. Consequently, lumens in ducts and secretory portions were dilated, and blisters and papules formed on the skin surface in the knockout mice. The phenotype was strikingly similar to the human sweat retention disorder miliaria. We further show that Foxc1 deficiency ectopically induces the expression of keratinocyte terminal differentiation markers in the duct luminal cells, which most likely contribute to keratotic plug formation. Among those differentiation markers, we show that Sprr2a transcription is directly repressed by overexpressed Foxc1 in keratinocytes. In summary, Foxc1 regulates sweat duct luminal cell differentiation, and mutant mice mimic miliaria and provide a possible animal model for its study.

摘要

汗腺对体温调节至关重要。汗腺的单一管状结构具有较低的分泌部分和通向皮肤分泌孔的上部重吸收导管。决定汗腺结构和功能的基因在很大程度上尚未明确。在此,我们报告一个Fox家族转录因子Foxc1对小鼠明显的汗腺导管活动是必需的。当Foxc1在皮肤中被特异性敲除时,汗腺看起来成熟,但小鼠严重少汗。形态学分析显示,汗腺导管被角化过度或不全角化的栓子阻塞。因此,导管和分泌部分的管腔扩张,基因敲除小鼠的皮肤表面形成水疱和丘疹。该表型与人类汗腺潴留性疾病痱子极为相似。我们进一步表明,Foxc1缺乏会异位诱导导管腔细胞中角质形成细胞终末分化标志物的表达,这很可能导致角化栓的形成。在这些分化标志物中,我们表明Sprr2a转录在角质形成细胞中被过表达的Foxc1直接抑制。总之,Foxc1调节汗腺导管腔细胞分化,突变小鼠模拟痱子并为其研究提供了一个可能的动物模型。

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