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Aldehyde Dehydrogenase 2 (ALDH2) and Aging: Is There a Sensible Link?

机译:醛脱氢酶2(ALDH2)和老化:是否有明智的联系?

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Aging is a complex irreversible biological process associated with increased prevalence of chronic disease and high healthcare burden. Several theories have been proposed for the biology of aging including free radical accumulation, DNA damage, apoptosis, telomere shortening, autophagy failure, and disturbed autonomic response. Aging is also closely associated with progressive deterioration of cardiovascular and neurological functions. Linkage, genome-wide association (GWAS), and next-generation sequencing analysis have confirmed a number of susceptibility loci for aging, in particular, Alzheimer's disease. Recent evidence from our group and others also revealed a tie between genetic mutation of mitochondrial aldehyde dehydrogenase (ALDH2) and life span as well as cardiovascular aging. ALDH2 represents the single most gene with the greatest number of human genetic polymorphism and is deemed an important enzyme for detoxification of reactive aldehydes. Here, we will briefly review the tie between ALDH2 and cardiovascular aging process. While recent work on ALDH2 research has broadened the pathogenic mechanisms of ALDH2 mutation or deficiency, therapeutic potential targeting ALDH2 in the elderly still remains debatable.
机译:老化是一种复杂的不可逆生物过程,与慢性疾病和高医疗保健负担的患病率增加相关。已经提出了衰老生物学的几种理论,包括自由基积累,DNA损伤,细胞凋亡,端粒缩短,自噬失败,以及干扰的自主主义反应。衰老也与心血管和神经功能的逐步恶化密切相关。联系,基因组关联(GWAS)和下一代测序分析证实了许多易感性基因座,特别是阿尔茨海默病。来自我们团体的最新证据以及其他人还揭示了线粒体醛脱氢酶(ALDH2)和寿命和心血管衰老的遗传突变之间的关系。 Aldh2表示具有最多的人类遗传多态性的最多基因,被认为是一种重要的反应性醛解毒的重要酶。在这里,我们将简要审查Aldh2和心血管衰老过程之间的关系。虽然最近的ALDH2研究的工作扩大了ALDH2突变或缺乏的致病机制,但老年人靶向ALDH2的治疗潜力仍然是可扩张性的。

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