皮肤发育过程中表观遗传学变化的综合评估

IF 6.2 3区 综合性期刊 Q1 Multidisciplinary
Li Lei, Ling Jiang, Yibo Hu, Menglu Chen, Jinhua Huang, Jing Chen, Qinghai Zeng
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引用次数: 0

摘要

表观遗传调控对多种生理和病理过程至关重要。然而,关于新生儿皮肤发育和皮肤老化过程中的表观遗传变化,以及对紫外线(UV)暴露的反应,人们知之甚少。使用R (version 4.0.3)软件分析不同年龄或不同类型和剂量紫外线照射的人体皮肤样本的转录组。皮肤的表观遗传景观,包括组蛋白修饰、遗传印迹和m6A修饰,主要涉及胶原形成、细胞外基质组织、免疫功能和角化,在新生儿到成人发育过程中发生了重大变化。IGF2BP2、GATA2、GATA3、CPA4、CDK1等表观遗传效应因子与细胞外基质组织显著相关,VEGFA、CDK1、PRKCB与皮肤免疫功能显著相关。m6A读取器如IGF2BP2、IGF2BP3、HNRNPA2B1和EIF3G与细胞外基质组织、代谢或抗原加工和递呈有显著相关性。小剂量的紫外线照射仅引起一些表观遗传效应因子表达水平的变化,对整体表观遗传景观没有显著影响。然而,最小剂量的红斑紫外线照射改变了调节细胞外基质组织、细胞-基质粘附、先天免疫反应、线粒体功能和mRNA加工的多种表观遗传效应。此外,与年轻皮肤相比,老年皮肤在紫外线照射后的表观遗传变化更为明显。综上所述,组蛋白修饰、遗传印迹和m6A修饰在皮肤发育过程中起着至关重要的作用,大剂量紫外线照射可显著改变多种表观遗传效应物的表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The comprehensive assessment of epigenetics changes during skin development

The comprehensive assessment of epigenetics changes during skin development
Epigenetic regulation is critical to multiple physiological and pathological processes. However, little is known regarding the epigenetic changes during neonatal skin development and skin aging, and in response to ultraviolet (UV) exposure. The transcriptomes of human skin samples from different ages or irradiated with different types and doses of UV light were analyzed using R (version 4.0.3) software. The epigenetic landscape of the skin, including histone modifications, genetic imprinting and m6A modification, which are mainly involved in collagen formation, extracellular matrix organization, immune function and keratinization, underwent significant changes during neonatal to adult development. Epigenetic effectors such as IGF2BP2, GATA2, GATA3, CPA4 and CDK1 were significantly correlated with extracellular matrix organization, and VEGFA, CDK1 and PRKCB with skin immune function. The m6A readers such as IGF2BP2, IGF2BP3, HNRNPA2B1 and EIF3G showed significant correlation with extracellular matrix organization, metabolism, or antigen processing and presentation. Small doses of UV exposure only induced changes in the expression levels of some epigenetic effectors, without any significant effect on the overall epigenetic landscape. However, the minimal erythema dose of UV exposure altered multiple epigenetic effectors regulating extracellular matrix organization, cell-matrix adhesion, innate immune response, mitochondrial function and mRNA processing. In addition, epigenetic changes following UV exposure were more pronounced in the elderly skin compared to the younger skin. In conclusion, histone modifications, genetic imprinting and m6A modification play critical roles during skin development, and a large dose of UV exposure can significantly change the expression of multiple epigenetic effectors.
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
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