Novel Role of the SIRT1 in Endocrine and Metabolic Diseases
Silent information regulator 1 (SIRT1), a highly conserved NAD -dependent deacetylase, is a cellular regulator that has received extensive attention in recent years and regarded as a sensor of cellular energy and metabolism. The accumulated evidence suggests that SIRT1 is involved in the development...
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| Published in: | International journal of biological sciences Vol. 19; no. 2; pp. 484 - 501 |
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| Main Authors: | , , , , , , , , , , , |
| Format: | Journal Article |
| Language: | English |
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2023
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| ISSN: | 1449-2288, 1449-2288 |
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| Abstract | Silent information regulator 1 (SIRT1), a highly conserved NAD
-dependent deacetylase, is a cellular regulator that has received extensive attention in recent years and regarded as a sensor of cellular energy and metabolism. The accumulated evidence suggests that SIRT1 is involved in the development of endocrine and metabolic diseases. In a variety of organisms, SIRT1 regulates gene expression through the deacetylation of histone, transcription factors, and lysine residues of other modified proteins including several metabolic and endocrine signal transcription factors, thereby enhancing the therapeutic effects of endocrine and metabolic diseases. These evidences indicate that targeting SIRT1 has promising applications in the treatment of endocrine and metabolic diseases. This review focuses on the role of SIRT1 in endocrine and metabolic diseases. First, we describe the background and structure of SIRT1. Then, we outline the role of SIRT1 in endocrine and metabolic diseases such as hyperuricemia, diabetes, hypertension, hyperlipidemia, osteoporosis, and polycystic ovarian syndrome. Subsequently, the SIRT1 agonists and inhibitors in the above diseases are summarized and future research directions are proposed. Overall, the information presents here may highlight the potential of SIRT1 as a future biomarker and therapeutic target for endocrine and metabolic diseases. |
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| AbstractList | Silent information regulator 1 (SIRT1), a highly conserved NAD+-dependent deacetylase, is a cellular regulator that has received extensive attention in recent years and regarded as a sensor of cellular energy and metabolism. The accumulated evidence suggests that SIRT1 is involved in the development of endocrine and metabolic diseases. In a variety of organisms, SIRT1 regulates gene expression through the deacetylation of histone, transcription factors, and lysine residues of other modified proteins including several metabolic and endocrine signal transcription factors, thereby enhancing the therapeutic effects of endocrine and metabolic diseases. These evidences indicate that targeting SIRT1 has promising applications in the treatment of endocrine and metabolic diseases. This review focuses on the role of SIRT1 in endocrine and metabolic diseases. First, we describe the background and structure of SIRT1. Then, we outline the role of SIRT1 in endocrine and metabolic diseases such as hyperuricemia, diabetes, hypertension, hyperlipidemia, osteoporosis, and polycystic ovarian syndrome. Subsequently, the SIRT1 agonists and inhibitors in the above diseases are summarized and future research directions are proposed. Overall, the information presents here may highlight the potential of SIRT1 as a future biomarker and therapeutic target for endocrine and metabolic diseases. Silent information regulator 1 (SIRT1), a highly conserved NAD+-dependent deacetylase, is a cellular regulator that has received extensive attention in recent years and regarded as a sensor of cellular energy and metabolism. The accumulated evidence suggests that SIRT1 is involved in the development of endocrine and metabolic diseases. In a variety of organisms, SIRT1 regulates gene expression through the deacetylation of histone, transcription factors, and lysine residues of other modified proteins including several metabolic and endocrine signal transcription factors, thereby enhancing the therapeutic effects of endocrine and metabolic diseases. These evidences indicate that targeting SIRT1 has promising applications in the treatment of endocrine and metabolic diseases. This review focuses on the role of SIRT1 in endocrine and metabolic diseases. First, we describe the background and structure of SIRT1. Then, we outline the role of SIRT1 in endocrine and metabolic diseases such as hyperuricemia, diabetes, hypertension, hyperlipidemia, osteoporosis, and polycystic ovarian syndrome. Subsequently, the SIRT1 agonists and inhibitors in the above diseases are summarized and future research directions are proposed. Overall, the information presents here may highlight the potential of SIRT1 as a future biomarker and therapeutic target for endocrine and metabolic diseases.Silent information regulator 1 (SIRT1), a highly conserved NAD+-dependent deacetylase, is a cellular regulator that has received extensive attention in recent years and regarded as a sensor of cellular energy and metabolism. The accumulated evidence suggests that SIRT1 is involved in the development of endocrine and metabolic diseases. In a variety of organisms, SIRT1 regulates gene expression through the deacetylation of histone, transcription factors, and lysine residues of other modified proteins including several metabolic and endocrine signal transcription factors, thereby enhancing the therapeutic effects of endocrine and metabolic diseases. These evidences indicate that targeting SIRT1 has promising applications in the treatment of endocrine and metabolic diseases. This review focuses on the role of SIRT1 in endocrine and metabolic diseases. First, we describe the background and structure of SIRT1. Then, we outline the role of SIRT1 in endocrine and metabolic diseases such as hyperuricemia, diabetes, hypertension, hyperlipidemia, osteoporosis, and polycystic ovarian syndrome. Subsequently, the SIRT1 agonists and inhibitors in the above diseases are summarized and future research directions are proposed. Overall, the information presents here may highlight the potential of SIRT1 as a future biomarker and therapeutic target for endocrine and metabolic diseases. Silent information regulator 1 (SIRT1), a highly conserved NAD -dependent deacetylase, is a cellular regulator that has received extensive attention in recent years and regarded as a sensor of cellular energy and metabolism. The accumulated evidence suggests that SIRT1 is involved in the development of endocrine and metabolic diseases. In a variety of organisms, SIRT1 regulates gene expression through the deacetylation of histone, transcription factors, and lysine residues of other modified proteins including several metabolic and endocrine signal transcription factors, thereby enhancing the therapeutic effects of endocrine and metabolic diseases. These evidences indicate that targeting SIRT1 has promising applications in the treatment of endocrine and metabolic diseases. This review focuses on the role of SIRT1 in endocrine and metabolic diseases. First, we describe the background and structure of SIRT1. Then, we outline the role of SIRT1 in endocrine and metabolic diseases such as hyperuricemia, diabetes, hypertension, hyperlipidemia, osteoporosis, and polycystic ovarian syndrome. Subsequently, the SIRT1 agonists and inhibitors in the above diseases are summarized and future research directions are proposed. Overall, the information presents here may highlight the potential of SIRT1 as a future biomarker and therapeutic target for endocrine and metabolic diseases. |
| Author | Lu, Chenxi Zhang, Juan Zhang, Huan Wang, Li Yao, Hairong Liu, Tong Zhao, Huadong Gou, Tiantian Tian, Ye Liu, Yanqing Yang, Yang Yang, Zhi |
| AuthorAffiliation | 2 Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education. Faculty of Life Sciences and Medicine, Northwest University, Xi'an, China 1 Department of Cardiology, Xi'an No.3 Hospital, The Affiliated Hospital of Northwest University. Faculty of Life Sciences and Medicine, Northwest University, Xi'an, China 3 Department of General Surgery, Tangdu Hospital, The Airforce Medical University, 1 Xinsi Road, Xi'an 710038, China |
| AuthorAffiliation_xml | – name: 1 Department of Cardiology, Xi'an No.3 Hospital, The Affiliated Hospital of Northwest University. Faculty of Life Sciences and Medicine, Northwest University, Xi'an, China – name: 3 Department of General Surgery, Tangdu Hospital, The Airforce Medical University, 1 Xinsi Road, Xi'an 710038, China – name: 2 Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education. Faculty of Life Sciences and Medicine, Northwest University, Xi'an, China |
| Author_xml | – sequence: 1 givenname: Chenxi surname: Lu fullname: Lu, Chenxi – sequence: 2 givenname: Huadong surname: Zhao fullname: Zhao, Huadong – sequence: 3 givenname: Yanqing surname: Liu fullname: Liu, Yanqing – sequence: 4 givenname: Zhi surname: Yang fullname: Yang, Zhi – sequence: 5 givenname: Hairong surname: Yao fullname: Yao, Hairong – sequence: 6 givenname: Tong surname: Liu fullname: Liu, Tong – sequence: 7 givenname: Tiantian surname: Gou fullname: Gou, Tiantian – sequence: 8 givenname: Li surname: Wang fullname: Wang, Li – sequence: 9 givenname: Juan surname: Zhang fullname: Zhang, Juan – sequence: 10 givenname: Ye surname: Tian fullname: Tian, Ye – sequence: 11 givenname: Yang surname: Yang fullname: Yang, Yang – sequence: 12 givenname: Huan surname: Zhang fullname: Zhang, Huan |
| BackLink | https://www.ncbi.nlm.nih.gov/pubmed/36632457$$D View this record in MEDLINE/PubMed |
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| Keywords | inhibitors agonists SIRT1 endocrine metabolic |
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| Snippet | Silent information regulator 1 (SIRT1), a highly conserved NAD
-dependent deacetylase, is a cellular regulator that has received extensive attention in recent... Silent information regulator 1 (SIRT1), a highly conserved NAD+-dependent deacetylase, is a cellular regulator that has received extensive attention in recent... |
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| SubjectTerms | Adipocytes Aging Apoptosis Autophagy Biomarkers Biomarkers - metabolism Deacetylation Diabetes Diabetes mellitus Endocrine system Endocrine System Diseases - diagnosis Endocrine System Diseases - drug therapy Endocrine System Diseases - metabolism Energy metabolism Female reproductive system Gene expression Glucose Histones Humans Hyperlipidemia Hypertension Hyperuricemia Insulin Kinases Lipids Localization Lysine Mammals Melatonin Metabolic Diseases - diagnosis Metabolic Diseases - drug therapy Metabolic Diseases - metabolism Metabolic disorders Molecular Targeted Therapy Osteoporosis Oxidative stress Pancreas Physiology Polycystic ovary syndrome Proteins Review Senescence SIRT1 protein Sirtuin 1 - metabolism Therapeutic targets Transcription factors Transcription Factors - metabolism |
| Title | Novel Role of the SIRT1 in Endocrine and Metabolic Diseases |
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