[HTML][HTML] Mitochondrial Sirtuin 3: New emerging biological function and therapeutic target
J Zhang, H **ang, J Liu, Y Chen, RR He, B Liu - Theranostics, 2020 - ncbi.nlm.nih.gov
Abstract Sirtuin 3 (SIRT3) is one of the most prominent deacetylases that can regulate
acetylation levels in mitochondria, which are essential for eukaryotic life and inextricably …
acetylation levels in mitochondria, which are essential for eukaryotic life and inextricably …
The diversity and breadth of cancer cell fatty acid metabolism
Tumor cellular metabolism exhibits distinguishing features that collectively enhance
biomass synthesis while maintaining redox balance and cellular homeostasis. These …
biomass synthesis while maintaining redox balance and cellular homeostasis. These …
Lifelong restriction of dietary branched-chain amino acids has sex-specific benefits for frailty and life span in mice
NE Richardson, EN Konon, HS Schuster, AT Mitchell… - Nature Aging, 2021 - nature.com
Protein-restricted diets promote health and longevity in many species. While the precise
components of a protein-restricted diet that mediate the beneficial effects to longevity have …
components of a protein-restricted diet that mediate the beneficial effects to longevity have …
Understanding the function of mammalian sirtuins and protein lysine acylation
Protein lysine acetylation is an important posttranslational modification that regulates
numerous biological processes. Targeting lysine acetylation regulatory factors, such as …
numerous biological processes. Targeting lysine acetylation regulatory factors, such as …
The significant role of amino acid metabolic reprogramming in cancer
X Liu, B Ren, J Ren, M Gu, L You, Y Zhao - Cell Communication and …, 2024 - Springer
Amino acid metabolism plays a pivotal role in tumor microenvironment, influencing various
aspects of cancer progression. The metabolic reprogramming of amino acids in tumor cells …
aspects of cancer progression. The metabolic reprogramming of amino acids in tumor cells …
Inactivation of the AMPK–GATA3–ECHS1 pathway induces fatty acid synthesis that promotes clear cell renal cell carcinoma growth
YY Qu, R Zhao, HL Zhang, Q Zhou, FJ Xu, X Zhang… - Cancer research, 2020 - AACR
The tumorigenic role and underlying mechanisms of lipid accumulation, commonly observed
in many cancers, remain insufficiently understood. In this study, we identified an AMP …
in many cancers, remain insufficiently understood. In this study, we identified an AMP …
Nicotinamide mononucleotide alleviates cardiomyopathy phenotypes caused by short-chain enoyl-CoA hydratase 1 deficiency
K Cai, F Wang, JQ Lu, AN Shen, SM Zhao… - Basic to Translational …, 2022 - jacc.org
Short-chain enoyl-CoA hydratase 1 (ECHS1) deficiency plays a role in cardiomyopathy.
Whether ECHS1 deficiency causes or is only associated with cardiomyopathy remains …
Whether ECHS1 deficiency causes or is only associated with cardiomyopathy remains …
Lycorine promotes IDH1 acetylation to induce mitochondrial dynamics imbalance in colorectal cancer cells
FF Zhuo, L Li, TT Liu, XM Liang, Z Yang, YZ Zheng… - Cancer Letters, 2023 - Elsevier
Abstract Isocitrate dehydrogenase (IDH) 1 and 2, as essential enzymes in energy
metabolism, contribute to the survival and drug resistance of a variety of solid tumors …
metabolism, contribute to the survival and drug resistance of a variety of solid tumors …
Advances in characterization of SIRT3 deacetylation targets in mitochondrial function
S Wang, J Zhang, X Deng, Y Zhao, K Xu - Biochimie, 2020 - Elsevier
The homeostasis of mitochondrial functional state is intimately in relation with SIRT3
(sirtuin3). SIRT3, the deacetylase mainly anchored in mitochondria, acts as a modulator of …
(sirtuin3). SIRT3, the deacetylase mainly anchored in mitochondria, acts as a modulator of …
[HTML][HTML] SIRT6 in vascular diseases, from bench to bedside
SC Ren, X Chen, H Gong, H Wang, C Wu, PH Li… - Aging and …, 2022 - ncbi.nlm.nih.gov
Aging is a key risk factor for angiogenic dysfunction and cardiovascular diseases, including
heart failure, hypertension, atherosclerosis, diabetes, and stroke. Members of the NAD+ …
heart failure, hypertension, atherosclerosis, diabetes, and stroke. Members of the NAD+ …