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Serotonin and the Brain's Rich Club—Association Between Molecular Genetic Variation on the TPH2 Gene and the Structural Connectome

机译:血清素和大脑的富含俱乐部关联在TPH2基因和结构连接的分子遗传变异之间

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摘要

The rich club comprises a densely mutually connected set of hub regions in the brain, thought to serve as a processing and integration core. We assessed the impact of normal variation of the tryptophane hydroxylase 2 gene's promotor region (TPH2 rs4570625) on structural connectivity of the rich club pathways by means of a candidate gene association design. Tryptophane hydroxylase 2 (TPH2) is a rate-limiting enzyme in the biosynthesis of serotonin and is known to inhibit, in addition to its role as a trans-synaptic messenger, axonal and dendritic growth. The TPH2 T-variant has been associated with reduced mRNA expression and reduced serotonin levels, which may particularly influence the development of macroscale anatomical connectivity. Here, we show larger mean connectivity in the rich club in carriers of the T-variant, suggesting potential effects of upregulation of neural connectivity growth in this central core system. In addition, by edge-removal statistics, we show that the TPH2-associated higher levels of rich club connectivity are of importance for the functioning of the total structural network. The observed association is speculated to result from an effect of serotonin levels on brain development, potentially leading to stronger structural connectivity in heavily interconnected hubs.
机译:丰富的俱乐部包括大脑中的浓密相互连接的一组枢纽区域,被认为是作为处理和集成核心。我们评估了色氨酸羟化酶2基因促进区(TPH2 RS4570625)对富杆杆途径的结构连通性的正常变化的影响通过候选基因关联设计。色氨酸羟化酶2(TPH2)是羟色胺生物合成中的速率限制酶,并且已知除了其作为跨突触信使,轴突和树突生长的作用之外抑制。 TPH2 T变体已经与降低的mRNA表达和减少的血清素水平有关,这可能特别影响宏观解剖连接的发展。在这里,我们在T-Variant的载体中显示出富俱乐部中的较大平均连接,这表明在该中央核心系统中提出神经连通性增长的潜在影响。此外,通过边缘删除统计,我们表明TPH2相关的富含俱乐部连接水平对于总结构网络的运作至关重要。观察到的关联被推测是由于血清素水平对大脑发育的影响,可能导致严重互连的枢纽中的结构性较强。

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