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Lack of serotonin1B receptor expression leads to age-related motor dysfunction early onset of brain molecular aging and reduced longevity

机译:血清素1B受体表达的缺乏会导致与年龄有关的运动功能障碍脑分子衰老的早期发作和寿命降低

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摘要

Normal aging of the brain differs from pathological conditions and is associated with increased risk for psychiatric and neurological disorders. In addition to its role in the etiology and treatment of mood disorders, altered serotonin (5-HT) signaling is considered a contributing factor to aging; however, no causative role has been identified in aging. We hypothesized that a deregulation of the 5-HT system would reveal its contribution to age-related processes and investigated behavioral and molecular changes throughout adult life in mice lacking the regulatory presynaptic 5-HT1B receptor (5-HT1BR), a candidate gene for 5-HT-mediated age-related functions. We show that the lack of 5-HT1BR (Htr1bKO mice) induced an early age-related motor decline and resulted in decreased longevity. Analysis of life-long transcriptome changes revealed an early and global shift of the gene expression signature of aging in the brain of Htr1bKO mice. Moreover, molecular changes reached an apparent maximum effect at 18-months in Htr1bKO mice, corresponding to the onset of early death in that group. A comparative analysis with our previous characterization of aging in the human brain revealed a phylogenetic conservation of age-effect from mice to humans, and confirmed the early onset of molecular aging in Htr1bKO mice. Potential mechanisms appear independent of known central mechanisms (Bdnf, inflammation), but may include interactions with previously identified age-related systems (IGF-1, sirtuins). In summary, our findings suggest that the onset of age-related events can be influenced by altered 5-HT function, thus identifying 5-HT as a modulator of brain aging, and suggesting age-related consequences to chronic manipulation of 5-HT.
机译:正常的大脑老化与病理状况不同,并且与精神病和神经病的风险增加有关。除了其在情绪障碍的病因学和治疗中的作用外,血清素(5-HT)信号的改变也被认为是导致衰老的因素。然而,在衰老中尚未发现致病作用。我们假设,对5-HT系统的解除管制将揭示其对与年龄相关的过程的贡献,并在缺乏调节性突触前5-HT1B受体(5-HT1BR)(5个候选基因)的小鼠中研究整个成年后的行为和分子变化。 -HT介导的与年龄有关的功能。我们表明,缺乏5-HT1BR(Htr1b KO 小鼠)会引起与年龄有关的早期运动能力下降,并导致寿命降低。终生转录组变化的分析表明,Htr1b KO 小鼠大脑中衰老的基因表达特征发生了早期和全球性转变。此外,在Htr1b KO 小鼠中,分子变化在18个月时达到了明显的最大效应,这与该组中早期死亡的发生相对应。与我们先前在人脑中的衰老特征进行的比较分析显示,从小鼠到人类的年龄效应在系统发育上均得到保留,并证实了Htr1b KO 小鼠中分子衰老的早发。潜在的机制似乎独立于已知的中枢机制(Bdnf,炎症),但可能包括与先前确定的年龄相关系统(IGF-1,sirtuins)的相互作用。总之,我们的发现表明,与年龄相关的事件的发作可能会受到5-HT功能改变的影响,从而确定5-HT是脑衰老的调节剂,并暗示了与年龄相关的后果对5-HT的长期操纵。

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