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Review Article | Open Access

Modulation of SIRT6 activity acts as an emerging therapeutic implication for pathological disorders in the skeletal system

Zicai DongaChuan YangaJiulin TanbCe DoubYueqi Chenb( )
Department of Biomedical Materials Science, Army Medical University, Chongqing 400038, China
Department of Orthopedics, Southwest Hospital, Army Medical University, Chongqing 400038, China

Peer review under responsibility of Chongqing Medical University.

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Abstract

The skeletal system is a dynamically balanced system, which undergoes continuous bone resorption and formation to maintain bone matrix homeostasis. As an important ADP-ribosylase and NAD+-dependent deacylase, SIRT6 (SIR2-like protein 6) is widely expressed on various kinds of bone cells, such as chondrocytes, osteoblasts, osteoclasts. The aberration of SIRT6 impairs gene expression (e.g., NF-κB and Wnt target genes) and cellular functions (e.g., DNA repair, glucose and lipid metabolism, telomeric maintenance), which disturbs the dynamic balance and ultimately leads to several bone-related diseases. In this review, we summarize the critical roles of SIRT6 in the onset and progression of bone-related diseases including osteoporosis, osteoarthritis, rheumatoid arthritis, and intervertebral disc degeneration, as well as the relevant signaling pathways. In addition, we discuss the advances in the development of SIRT6 activators and elucidate their pharmacological profiles, which may provide novel treatment strategies for these skeletal diseases.

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Genes & Diseases
Pages 864-876

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Review Status: {{reviewData.commendedNum}} Commended , {{reviewData.revisionRequiredNum}} Revision Required , {{reviewData.notCommendedNum}} Not Commended Under Peer Review

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Cite this article:
Dong Z, Yang C, Tan J, et al. Modulation of SIRT6 activity acts as an emerging therapeutic implication for pathological disorders in the skeletal system. Genes & Diseases, 2023, 10(3): 864-876. https://doi.org/10.1016/j.gendis.2021.12.024

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Received: 31 August 2021
Revised: 20 December 2021
Accepted: 29 December 2021
Published: 12 February 2022
© 2022 The Authors.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).