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首页> 外文期刊>Future Neurology >Identification of interaction between serotonin transporter and glycogen synthase kinase-3β gene polymorphisms: role in susceptibility to bipolar disorder
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Identification of interaction between serotonin transporter and glycogen synthase kinase-3β gene polymorphisms: role in susceptibility to bipolar disorder

机译:血清素转运蛋白与糖原合酶激酶3β基因多态性之间相互作用的鉴定:在躁郁症易感性中的作用

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摘要

Background: Genetic correlates of diseases of complex inheritance may include variations in several genes lying within a network of linked biological processes. Synaptic mechanisms, such as serotonin neurotransmission and second (third) messengers (e.g., glycogen synthase kinase [GSK]), have been implicated in susceptibility to mood disorders, the actions of therapeutic drugs and manipulation of circadian rhythms. A better understanding of such gene networks may be useful to understand the biology and treatment of mood disorders. Methods: We studied the association between serotonergic and GSK-mediated signaling networks with bipolar affective disorder (BPAD). We analyzed two single nucleotide polymorphisms (SNPs) in the HTR2A gene, a promoter SNP in SLC6A4 and a promoter SNP in the GSK3B gene in BPAD individuals and matched controls. A multifactor dimensionality reduction tool was employed to study gene–gene interactions and analyze multilocus genotype combination associations with high- or low-risk of BPAD. Results: Multifactor dimensionality reduction detected the best interacting model involving 5-HTTLPR (SLC6A4) and rs334558 (GSK3B). Conclusion: Our results suggest interplay between the serotonergic pathway and the second-messenger system involving GSK, which are important drug targets.
机译:背景:复杂遗传疾病的遗传相关性可能包括位于相互联系的生物过程网络中的几个基因的变异。诸如5-羟色胺神经传递和第二(第三)信使(例如,糖原合酶激酶[GSK])的突触机制与情绪障碍的易感性,治疗药物的作用和昼夜节律的操纵有关。更好地了解此类基因网络可能有助于理解情绪障碍的生物学和治疗。方法:我们研究了血清素能和GSK介导的信号传导网络与双相情感障碍(BPAD)之间的关联。我们分析了HTR2A基因中的两个单核苷酸多态性(SNP),SLC6A4中的启动子SNP和BPAD个体以及匹配的对照中GSK3B基因中的启动子SNP。使用多因素降维工具研究基因与基因的相互作用,并分析多位点基因型组合与BPAD高风险或低风险的关联。结果:多维度降维检测到了涉及5-HTTLPR(SLC6A4)和rs334558(GSK3B)的最佳交互模型。结论:我们的结果表明,血清素能通路与涉及GSK的第二信使系统之间存在相互作用,这是重要的药物靶标。

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