Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Particulate matter-induced senescence of skin keratinocytes involves oxidative stress-dependent epigenetic modifications

View through CrossRef
Abstract Ambient air particulate matter (PM) induces senescence in human skin cells. However, the underlying mechanisms remain largely unknown. We investigated how epigenetic regulatory mechanisms participate in cellular senescence induced by PM with a diameter <2.5 (PM2.5) in human keratinocytes and mouse skin tissues. PM2.5-treated cells exhibited characteristics of cellular senescence. PM2.5 induced a decrease in DNA methyltransferase (DNMT) expression and an increase in DNA demethylase (ten–eleven translocation; TET) expression, leading to hypomethylation of the p16INK4A promoter region. In addition, PM2.5 led to a decrease in polycomb EZH2 histone methyltransferase expression, whereas the expression of the epigenetic transcriptional activator MLL1 increased. Furthermore, binding of DNMT1, DNMT3B, and EZH2 to the promoter region of p16INK4A decreased in PM2.5-treated keratinocytes, whereas TET1 and MLL1 binding increased, leading to decreased histone H3 lysine 27 trimethylation (H3K27Me3) and increased H3K4Me3 in the promoter of p16INK4A. PM2.5-induced senescence involved aryl hydrocarbon receptor (AhR)-induced reactive oxygen species (ROS) production. ROS scavenging dampened PM2.5-induced cellular senescence through regulation of DNA and histone methylation. Altogether, our work shows that skin senescence induced by environmental PM2.5 occurs through ROS-dependent the epigenetic modification of senescence-associated gene expression. Our findings provide information for the design of preventive and therapeutic strategies against skin senescence, particularly in light of the increasing problem of PM2.5 exposure due to air pollution.
Title: Particulate matter-induced senescence of skin keratinocytes involves oxidative stress-dependent epigenetic modifications
Description:
Abstract Ambient air particulate matter (PM) induces senescence in human skin cells.
However, the underlying mechanisms remain largely unknown.
We investigated how epigenetic regulatory mechanisms participate in cellular senescence induced by PM with a diameter <2.
5 (PM2.
5) in human keratinocytes and mouse skin tissues.
PM2.
5-treated cells exhibited characteristics of cellular senescence.
PM2.
5 induced a decrease in DNA methyltransferase (DNMT) expression and an increase in DNA demethylase (ten–eleven translocation; TET) expression, leading to hypomethylation of the p16INK4A promoter region.
In addition, PM2.
5 led to a decrease in polycomb EZH2 histone methyltransferase expression, whereas the expression of the epigenetic transcriptional activator MLL1 increased.
Furthermore, binding of DNMT1, DNMT3B, and EZH2 to the promoter region of p16INK4A decreased in PM2.
5-treated keratinocytes, whereas TET1 and MLL1 binding increased, leading to decreased histone H3 lysine 27 trimethylation (H3K27Me3) and increased H3K4Me3 in the promoter of p16INK4A.
PM2.
5-induced senescence involved aryl hydrocarbon receptor (AhR)-induced reactive oxygen species (ROS) production.
ROS scavenging dampened PM2.
5-induced cellular senescence through regulation of DNA and histone methylation.
Altogether, our work shows that skin senescence induced by environmental PM2.
5 occurs through ROS-dependent the epigenetic modification of senescence-associated gene expression.
Our findings provide information for the design of preventive and therapeutic strategies against skin senescence, particularly in light of the increasing problem of PM2.
5 exposure due to air pollution.

Related Results

Study of the regulatory mechanism involved in dark-induced Postharvest leaf senescence
Study of the regulatory mechanism involved in dark-induced Postharvest leaf senescence
Postharvest leaf senescence contributes to quality losses in flowers and leafy vegetables. The general goal of this research project was to investigate the regulatory mechanisms in...
Abstract A16: Wnt antagonist SFRP1 functions as secreted mediator of senescence
Abstract A16: Wnt antagonist SFRP1 functions as secreted mediator of senescence
Abstract The purpose of this study was 1) to identify the mediator(s) of senescence that are secreted from senescent cells and induce senescence in an autocrine and ...
Systematic transcriptomic analysis and temporal modelling of human fibroblast senescence
Systematic transcriptomic analysis and temporal modelling of human fibroblast senescence
Cellular senescence is a diverse phenotype characterised by permanent cell cycle arrest and an associated secretory phenotype (SASP) which includes inflammatory cytokines. Typicall...
Korean Red Ginseng Attenuates Particulate Matter-Induced Senescence of Skin Keratinocytes
Korean Red Ginseng Attenuates Particulate Matter-Induced Senescence of Skin Keratinocytes
Skin is a direct target of fine particulate matter (PM2.5), as it is constantly exposed. Herein, we investigate whether Korean red ginseng (KRG) can inhibit PM2.5-induced senescenc...

Back to Top