Jaime L Tartar, Franklin S Hiffernan, Kristine E Freitas, Ana I Fins, Jonathan B Banks
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引用次数: 0
Abstract
Increased adenosine levels throughout the day promote sleepiness. A single nucleotide polymorphism (SNP) in the adenosine deaminase ADA gene (rs73598374) has been shown to affect sleep regulation. The extent to which lower ADA enzymatic activity is associated with the homeostatic sleep factor, melatonin, is uncertain. To test this possibility, we assessed the relationship between the ADA polymorphism and evening melatonin levels, as well as self-reported sleep behavior. Given the close relationship between mood and sleep behavior, we further tested the impact of ADA genotype on self-reported mood. We show that relative to the GG homozygotes, the A allele carriers (higher adenosine levels) had significantly higher evening melatonin levels as well as significantly better sleep quality. We further show the correlations between sleep and mood measures were altered by ADA genotype, with a stronger relationship observed in the GG (lower adenosine) group. Combined, these findings advance our understanding of the biochemistry of melatonin production by showing that there is a relationship between ADA genotype and melatonin levels. The differential relationships between sleep and psychological health between the genotype groups may reveal novel insights about the development of genotype-specific progression of various psychological disorders such as chronic anxiety and stress.
全天腺苷水平的增加会促进嗜睡。腺苷脱氨酶 ADA 基因(rs73598374)中的单核苷酸多态性(SNP)已被证明会影响睡眠调节。ADA 酶活性的降低在多大程度上与睡眠平衡因子褪黑激素有关,目前尚不确定。为了验证这种可能性,我们评估了 ADA 多态性与晚间褪黑激素水平以及自我报告的睡眠行为之间的关系。鉴于情绪与睡眠行为之间的密切关系,我们进一步测试了 ADA 基因型对自我报告情绪的影响。我们发现,相对于 GG 等位基因携带者,A 等位基因携带者(腺苷水平较高)的晚间褪黑激素水平明显更高,睡眠质量也明显更好。我们进一步发现,睡眠和情绪测量之间的相关性因 ADA 基因型而改变,在 GG(腺苷水平较低)组中观察到更强的相关性。这些研究结果表明,ADA 基因型与褪黑激素水平之间存在关系,从而加深了我们对褪黑激素产生的生化过程的理解。基因型组之间睡眠与心理健康之间的不同关系可能会揭示基因型特异性导致各种心理疾病(如慢性焦虑和压力)发展的新见解。
期刊介绍:
Journal of Circadian Rhythms is an Open Access, peer-reviewed online journal that publishes research articles dealing with circadian and nycthemeral (daily) rhythms in living organisms, including processes associated with photoperiodism and daily torpor. Journal of Circadian Rhythms aims to include both basic and applied research at any level of biological organization (molecular, cellular, organic, organismal, and populational). Studies of daily rhythms in environmental factors that directly affect circadian rhythms are also pertinent to the journal"s mission.