Department of Preventive Cardiology, Saint Luke's Mid America Heart Institute, Kansas City, Missouri, USA
Catalytic Longevity, Encinitas, California, USA.
Open Heart. 2022 Mar;9(1). doi: 10.1136/openhrt-2021-001927.
For reasons that remain unclear, endogenous synthesis and tissue levels of coenzyme Q10 (CoQ10) tend to decline with increasing age in at least some tissues. When CoQ10 levels are sufficiently low, this compromises the efficiency of the mitochondrial electron transport chain, such that production of superoxide by site 2 increases and the rate of adenosine triphosphate production declines. Moreover, CoQ10 deficiency can be expected to decrease activities of Sirt1 and Sirt3 deacetylases, believed to be key determinants of health span. Reduction of the cytoplasmic and mitochondrial NAD/NADH ratio consequent to CoQ10 deficit can be expected to decrease the activity of these deacetylases by lessening availability of their obligate substrate NAD The increased oxidant production induced by CoQ10 deficiency can decrease the stability of Sirt1 protein by complementary mechanisms. And CoQ10 deficiency has also been found to lower mRNA expression of Sirt1. An analysis of the roles of Sirt1/Sirt3 in modulation of cellular function helps to rationalise clinical benefits of CoQ10 supplementation reported in heart failure, hypertension, non-alcoholic fatty liver disease, metabolic syndrome and periodontal disease. Hence, correction of CoQ10 deficiency joins a growing list of measures that have potential for amplifying health protective Sirt1/Sirt3 activities.
由于目前尚不清楚的原因,内源性辅酶 Q10(CoQ10)的合成和组织水平似乎随着年龄的增长而在至少一些组织中降低。当 CoQ10 水平足够低时,这会影响线粒体电子传递链的效率,使得 2 号位点的超氧化物生成增加,三磷酸腺苷的产生减少。此外,CoQ10 缺乏可预计会降低 Sirt1 和 Sirt3 脱乙酰酶的活性,而这些脱乙酰酶被认为是健康寿命的关键决定因素。由于 CoQ10 缺乏导致细胞质和线粒体 NAD/NADH 比例降低,其必需底物 NAD 的可用性减少,这些脱乙酰酶的活性预计会降低。CoQ10 缺乏引起的氧化剂产生增加可通过互补机制降低 Sirt1 蛋白的稳定性。此外,CoQ10 缺乏还被发现会降低 Sirt1 的 mRNA 表达。对 Sirt1/Sirt3 在调节细胞功能中的作用的分析有助于合理化 CoQ10 补充在心力衰竭、高血压、非酒精性脂肪肝疾病、代谢综合征和牙周病中的临床益处。因此,纠正 CoQ10 缺乏症加入了一系列具有增强健康保护 Sirt1/Sirt3 活性潜力的措施。