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HPA Axis Genes and Their Interaction with Childhood Maltreatment are Related to Cortisol Levels and Stress-Related Phenotypes

机译:HPA轴基因及其与儿童期虐待的相互作用与皮质醇水平和与压力相关的表型有关

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摘要

Stress responses are controlled by the hypothalamus pituitary adrenal (HPA)-axis and maladaptive stress responses are associated with the onset and maintenance of stress-related disorders such as major depressive disorder (MDD). Genes that play a role in the HPA-axis regulation may likely contribute to the relation between relevant neurobiological substrates and stress-related disorders. Therefore, we performed gene-wide analyses for 30 a priori literature-based genes involved in HPA-axis regulation in 2014 subjects (34% male; mean age: 42.5) to study the relations with lifetime MDD diagnosis, cortisol awakening response, and dexamethasone suppression test (DST) levels (subsample N=1472) and hippocampal and amygdala volume (3T MR images; subsample N=225). Additionally, gene by childhood maltreatment (CM) interactions were investigated. Gene-wide significant results were found for dexamethasone suppression (CYP11A1, CYP17A1, POU1F1, AKR1D1), hippocampal volume (CYP17A1, CYP11A1, HSD3B2, PROP1, AVPRA1, SRD5A1), amygdala volume (POMC, CRH, HSD3B2), and lifetime MDD diagnosis (FKBP5 and CRH), all permutation p-values<0.05. Interactions with CM were found for several genes; the strongest interactions were found for NR3C2, where the minor allele of SNP rs17581262 was related to smaller hippocampal volume, smaller amygdala volume, higher DST levels, and higher odds of MDD diagnosis only in participants with CM. As hypothesized, several HPA-axis genes are associated with stress-related endophenotypes including cortisol response and reduced brain volumes. Furthermore, we found a pleiotropic interaction between CM and the mineralocorticoid receptor gene, suggesting that this gene plays an important moderating role in stress and stress-related disorders.
机译:应激反应由下丘脑垂体肾上腺(HPA)轴控制,适应不良的应激反应与应激相关疾病(如重度抑郁症(MDD))的发作和维持有关。在HPA轴调控中起作用的基因可能会促进相关神经生物学底物与压力相关疾病之间的关系。因此,我们对2014年受试者(34%的男性;平均年龄:42.5)中涉及HPA轴调控的30个基于先验文献的基因进行了全基因分析,以研究其与终生MDD诊断,皮质醇唤醒反应和地塞米松的关系。抑制试验(DST)水平(子样本N = 1472)以及海马和杏仁核体积(3T MR图像;子样本N = 225)。此外,还研究了儿童期受虐待(CM)相互作用的基因。在全基因范围内发现了地塞米松抑制作用(CYP11A1,CYP17A1,POU1F1,AKR1D1),海马体积(CYP17A1,CYP11A1,HSD3B2,PROP1,AVPRA1,SRD5A1),杏仁核体积(POMC,CDR, ( FKBP5 CRH ),所有排列 p 值<0.05。发现与CM的相互作用有几个基因。 NR3C2相互作用最强,其中SNP rs17581262的次要等位基因与较小的海马体积,较小的杏仁核体积,较高的DST水平和仅在CM参与者中MDD诊断的可能性有关。如所假设的,几个HPA轴基因与压力相关的内表型有关,包括皮质醇反应和脑容量减少。此外,我们发现CM和盐皮质激素受体基因之间的多效性相互作用,表明该基因在应激和应激相关疾病中起重要的调节作用。

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