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miR-30a-5p 通过调控 BNIP3L/NIX 依赖的自噬来改变衰老过程中的表皮终末分化。

MiR-30a-5p Alters Epidermal Terminal Differentiation during Aging by Regulating BNIP3L/NIX-Dependent Mitophagy.

机构信息

CNRS UMR 5305, Tissue Biology and Therapeutic Engineering Laboratory (LBTI), 69007 Lyon, France.

Claude Bernard University Lyon 1, 69100 Villeurbanne, France.

出版信息

Cells. 2022 Feb 28;11(5):836. doi: 10.3390/cells11050836.

Abstract

Chronological aging is characterized by an alteration in the genes' regulatory network. In human skin, epidermal keratinocytes fail to differentiate properly with aging, leading to the weakening of the epidermal function. MiR-30a is particularly overexpressed with epidermal aging, but the downstream molecular mechanisms are still uncovered. The aim of this study was to decipher the effects of miR-30a overexpression in the human epidermis, with a focus on keratinocyte differentiation. We formally identified the mitophagy receptor BNIP3L as a direct target of miR-30a. Using a 3D organotypic model of reconstructed human epidermis overexpressing miR-30a, we observed a strong reduction in BNIP3L expression in the granular layer. In human epidermal sections of skin biopsies from donors of different ages, we observed a similar pattern of BNIP3L decreasing with aging. Moreover, human primary keratinocytes undergoing differentiation in vitro also showed a decreased expression of with age, together with a retention of mitochondria. Moreover, aging is associated with altered mitochondrial metabolism in primary keratinocytes, including decreased ATP-linked respiration. Thus, miR-30a is a negative regulator of programmed mitophagy during keratinocytes terminal differentiation, impairing epidermal homeostasis with aging.

摘要

随着时间的推移,衰老的特征是基因调控网络的改变。在人类皮肤中,表皮角质形成细胞随着衰老不能正常分化,导致表皮功能减弱。miR-30a 在表皮衰老过程中表达特别上调,但下游分子机制仍未被揭示。本研究旨在阐明 miR-30a 在人类表皮中的过度表达对表皮角质形成细胞分化的影响。我们正式确定自噬受体 BNIP3L 是 miR-30a 的直接靶标。使用过表达 miR-30a 的重建人表皮的 3D 器官型模型,我们观察到在颗粒层中 BNIP3L 的表达强烈减少。在不同年龄供体皮肤活检的人表皮切片中,我们观察到 BNIP3L 随着衰老呈相似的减少模式。此外,体外分化的人原代角质形成细胞也随着年龄的增长表现出 表达减少,同时线粒体滞留。此外,衰老与原代角质形成细胞中线粒体代谢的改变有关,包括减少与 ATP 相关的呼吸作用。因此,miR-30a 是角质形成细胞终末分化过程中程序性自噬的负调节剂,随着年龄的增长破坏表皮的内稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e114/8909909/6c15faf6188a/cells-11-00836-g001.jpg

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