PRMT5的表皮缺失导致非典型基底角化细胞样细胞群的出现和皮肤分层缺陷。

Nicole Recka, Andrean Simons, Robert A Cornell, Eric Van Otterloo
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引用次数: 0

摘要

在皮肤发育过程中,外胚层来源的细胞经过精确协调的增殖、分化和粘附形成层状表皮。这些过程的破坏可导致先天性异常,包括外胚层发育不良和丑角鱼鳞病。蛋白精氨酸甲基转移酶5 (PRMT5)——一种负责组蛋白和其他蛋白质中精氨酸残基甲基化的酶——在胚芽和肢芽细胞中维持祖细胞状态。同样,体外证据表明,PRMT5可以阻止基底角质形成细胞的分化,这使我们假设PRMT5在体内保留了角质形成细胞的干细胞表型。为了测试这种可能性,我们在早期外胚层(E7.5)产生了条件敲除(cKO)小鼠,缺乏Prmt5,影响整个表皮。Prmt5 cKOs表现出明显的皮肤缺陷,皮肤屏障功能受损,产后生存能力降低。组织学分析显示表皮分层有明显缺陷,但细胞凋亡和增殖没有改变。单细胞RNA和ATAC-seq分析在Prmt5 cKOs中发现了一个非典型的基底角化细胞样细胞群,其表现出衰老样程序,其特征是Cdkn1a (p21)增加,衰老相关分泌表型(SASP)分子(Igfbp2)升高,发育转录因子(Trp63)表达降低。我们的研究结果表明,PRMT5通过抑制Cdkn1a来阻止基底角化细胞衰老,从而揭示了先天性皮肤病中基底角化细胞维持和衰老的表观遗传调控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epidermal Loss of PRMT5 Leads to the Emergence of an Atypical Basal Keratinocyte-Like Cell Population and Defective Epidermal Stratification.

During skin development, ectoderm-derived cells undergo precisely coordinated proliferation, differentiation, and adhesion to yield stratified epidermis. Disruptions in these processes can result in congenital anomalies, including ectodermal dysplasia and harlequin ichthyosis. PRMT5-an enzyme responsible for methylating arginine residues in histones and other proteins-maintains progenitor status in germ and limb bud cells. Similarly, in vitro evidence suggests that PRMT5 prevents differentiation of basal keratinocytes, leading us to hypothesize that PRMT5 preserves the stem-cell phenotype of keratinocytes in vivo. To test this possibility, we generated conditional knockout mice lacking Prmt5 in early ectoderm (embryonic day 7.5), impacting the entire epidermis. Prmt5 conditional knockouts exhibited gross skin defects, compromised skin barrier function, and reduced postnatal viability. Histological analyses revealed significant defects in epidermal stratification, without alterations in apoptosis or proliferation. Single-cell RNA sequencing and Assay for Transposase-Accessible Chromatin with high-throughput sequencing analysis identified an atypical population of basal keratinocyte-like cells in Prmt5 conditional knockouts that exhibited a senescence-like program, characterized by increased Cdkn1a (p21), elevated senescence-associated secretory phenotype molecules (Igfbp2), and decreased developmental transcription factor (Trp63) expression. Our findings suggest that PRMT5 prevents basal keratinocyte senescence by repressing Cdkn1a, shedding light on the epigenetic regulation of basal keratinocyte maintenance and senescence in congenital skin disorders.

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