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Roles of Protein Post-Translational Modifications During Adipocyte Senescence

Title
Roles of Protein Post-Translational Modifications During Adipocyte Senescence
Authors
Hwang, Min-SeonPark, JingyeongHam, YunhaLee, In HyeChun, Kyung-Hee
Ewha Authors
이인혜
SCOPUS Author ID
이인혜scopus
Issue Date
2023
Journal Title
INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES
ISSN
1449-2288JCR Link
Citation
INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES vol. 19, no. 16, pp. 5245 - 5256
Keywords
AdipocyteSenescencePost-translational modificationMetabolic diseaseMetabolic homeostasis
Publisher
IVYSPRING INT PUBL
Indexed
SCIE; SCOPUS WOS
Document Type
Review
Abstract
Adipocytes are adipose tissues that supply energy to the body through lipids. The two main types of adipocytes comprise white adipocytes (WAT) that store energy, and brown adipocytes (BAT), which generate heat by burning stored fat (thermogenesis). Emerging evidence indicates that dysregulated adipocyte senescence may disrupt metabolic homeostasis, leading to various diseases and aging. Adipocytes undergo senescence via irreversible cell-cycle arrest in response to DNA damage, oxidative stress, telomere dysfunction, or adipocyte over-expansion upon chronic lipid accumulation. The amount of detectable BAT decreases with age. Activation of cell cycle regulators and dysregulation of adipogenesis-regulating factors may constitute a molecular mechanism that accelerates adipocyte senescence. To better understand the regulation of adipocyte senescence, the effects of post-translational modifications (PTMs), is essential for clarifying the activity and stability of these proteins. PTMs are covalent enzymatic protein modifications introduced following protein biosynthesis, such as phosphorylation, acetylation, ubiquitination, or glycosylation. Determining the contribution of PTMs to adipocyte senescence may identify new therapeutic targets for the regulation of adipocyte senescence. In this review, we discuss a conceptual case in which PTMs regulate adipocyte senescence and explain the mechanisms underlying protein regulation, which may lead to the development of effective strategies to combat metabolic diseases.
DOI
10.7150/ijbs.86404
Appears in Collections:
자연과학대학 > 생명과학전공 > Journal papers
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