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棕榈酰化调节表皮稳态和毛囊分化。

Palmitoylation regulates epidermal homeostasis and hair follicle differentiation.

机构信息

Medical Research Council, Human Genetics Unit, Edinburgh, United Kingdom.

出版信息

PLoS Genet. 2009 Nov;5(11):e1000748. doi: 10.1371/journal.pgen.1000748. Epub 2009 Nov 26.

Abstract

Palmitoylation is a key post-translational modification mediated by a family of DHHC-containing palmitoyl acyl-transferases (PATs). Unlike other lipid modifications, palmitoylation is reversible and thus often regulates dynamic protein interactions. We find that the mouse hair loss mutant, depilated, (dep) is due to a single amino acid deletion in the PAT, Zdhhc21, resulting in protein mislocalization and loss of palmitoylation activity. We examined expression of Zdhhc21 protein in skin and find it restricted to specific hair lineages. Loss of Zdhhc21 function results in delayed hair shaft differentiation, at the site of expression of the gene, but also leads to hyperplasia of the interfollicular epidermis (IFE) and sebaceous glands, distant from the expression site. The specific delay in follicle differentiation is associated with attenuated anagen propagation and is reflected by decreased levels of Lef1, nuclear beta-catenin, and Foxn1 in hair shaft progenitors. In the thickened basal compartment of mutant IFE, phospho-ERK and cell proliferation are increased, suggesting increased signaling through EGFR or integrin-related receptors, with a parallel reduction in expression of the key differentiation factor Gata3. We show that the Src-family kinase, Fyn, involved in keratinocyte differentiation, is a direct palmitoylation target of Zdhhc21 and is mislocalized in mutant follicles. This study is the first to demonstrate a key role for palmitoylation in regulating developmental signals in mammalian tissue homeostasis.

摘要

棕榈酰化是一种由含 DHHC 的棕榈酰转移酶 (PAT) 家族介导的关键翻译后修饰。与其他脂质修饰不同,棕榈酰化是可逆的,因此通常调节动态蛋白质相互作用。我们发现,小鼠脱发突变体,depilated(dep),是由于 PAT,Zdhhc21 中的单个氨基酸缺失,导致蛋白质定位错误和棕榈酰化活性丧失。我们检查了 Zdhhc21 蛋白在皮肤中的表达,发现它仅限于特定的毛发谱系。Zdhhc21 功能的丧失导致毛干分化延迟,在基因表达部位,但也导致毛囊间表皮 (IFE) 和皮脂腺的增生,远离表达部位。毛囊分化的特定延迟与静止期延长有关,并反映在毛干祖细胞中 Lef1、核β-catenin 和 Foxn1 的水平降低。在突变 IFE 的增厚基底室中,磷酸化 ERK 和细胞增殖增加,表明通过 EGFR 或整联蛋白相关受体的信号转导增加,同时关键分化因子 Gata3 的表达减少。我们表明,参与角质形成细胞分化的Src 家族激酶 Fyn 是 Zdhhc21 的直接棕榈酰化靶标,并在突变的毛囊中定位错误。这项研究首次证明了棕榈酰化在调节哺乳动物组织稳态发育信号中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d8e/2776530/276cc76c9d92/pgen.1000748.g001.jpg

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