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期刊文献
SIRT1-dependent restoration of NAD+ homeostasis after increased extracellular NAD+ exposure
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增加细胞外NAD+暴露后NAD+稳态的SIRT1依赖性恢复
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作者
Daniela Buonvicino[1];Giuseppe Ranieri[1];Maria Pittelli[2];Andrea Lapucci[1];Stefania Bragliola[1];Alberto Chiarugi[1]
作者单位
[1]Department of Health Sciences, Section of Clinical Pharmacology and Oncology, University of Florence, Florence, ItalyDepartment of Health Sciences, Section of Clinical Pharmacology and Oncology, University of Florence, Florence, Italy[2]Corporate Pre-Clinical R&D, Chiesi Farmaceutici S.p.A., Parma, ItalyCorporate Pre-Clinical R&D, Chiesi Farmaceutici S.p.A., Parma, Italy[∗]For correspondence: Daniela Buonvicino
关键词
NAD+;homeostasis;bioenergetics;sirtuin 1 (SIRT1);transport;
关键词译文
nad+;稳态;生物能学; sirtuin 1(sirt1);运输;
发布日期
1 July 2021
DOI
10.1016/j.jbc.2021.100855
来源信息
Journal of Biological Chemistry
ISSN:0021-9258, 2021年, 297卷, 1期
摘要
摘要译文
SIRT1 and NAD as regulators of ageing
SIRT1和NAD老化的监管
Neuroprotection of NAD+ and NBP against ischemia/reperfusion brain injury is associated with restoration of sirtuin-regulated metabolic homeostasis
Neuroprotection of NAD+ and NBP against ischemia/reperfusion brain injury is associated with restoration of sirtuin-regulated metabolic homeostasis
Maintenance of NAD+ Homeostasis in Skeletal Muscle during Aging and Exercise
在衰老和运动过程中维持NAD+稳态的骨骼肌
Role of Nuclear NAD+ in Retinal Homeostasis
Role of Nuclear NAD+ in Retinal Homeostasis
Synthesis and Degradation of NAD+ and Methods for Enhancing Its Levels
NAD+的合成、降解及提高其水平的方法
Mechanisms and Effects of Nad+ Modulation in Inflammation and Aging
Mechanisms and Effects of Nad+ Modulation in Inflammation and Aging
SIRT1 activated by AROS sensitizes glioma cells to ferroptosis via induction of NAD+ depletion-dependent activation of ATF3
通过AROS激活的SIRT1通过诱导NAD+耗尽依赖性ATF3激活神经胶质瘤细胞对螺旋菌病的敏感性
Metabolic Pathway Tracing for NAD+ Synthesis and Consumption
NAD+合成和消耗的代谢途径追踪
NAD+ improved experimental autoimmune encephalomyelitis by regulating SIRT1 to inhibit PI3K/Akt/mTOR signaling pathway
通过调节SIRT1抑制PI3K/AKT/MTOR信号传导途径,NAD+改善了实验性自身免疫性脑脊髓炎
Improvement Effect of Mitotherapy on the Cognitive Ability of Alzheimer’s Disease through NAD+/SIRT1-Mediated Autophagy
通过NAD+/SIRT1介导的自噬对雷疗法对阿尔茨海默氏病的认知能力的改善作用
Daniela Buonvicino[1];Giuseppe Ranieri[1];Maria Pittelli[2];Andrea Lapucci[1];Stefania Bragliola[1];Alberto Chiarugi[1]. SIRT1-dependent restoration of NAD+ homeostasis after increased extracellular NAD+ exposure[J]. Journal of Biological Chemistry, 2021,297(1)