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首页> 外文期刊>Translational psychiatry. >A gene co-expression module implicating the mitochondrial electron transport chain is associated with long-term response to lithium treatment in bipolar affective disorder
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A gene co-expression module implicating the mitochondrial electron transport chain is associated with long-term response to lithium treatment in bipolar affective disorder

机译:涉及线粒体电子转运链的基因共表达模块与双相情感障碍中锂治疗的长期反应有关

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Lithium is the first-line treatment for bipolar affective disorder (BPAD) but two-thirds of patients respond only partially or not at all. The reasons for this high variability in lithium response are not well understood. Transcriptome-wide profiling, which tests the interface between genes and the environment, represents a viable means of exploring the molecular mechanisms underlying lithium response variability. Thus, in the present study we performed co-expression network analyses of whole-blood-derived RNA-seq data from n =?50 lithium-treated BPAD patients. Lithium response was assessed using the well-validated ALDA scale, which we used to define both a continuous and a dichotomous measure. We identified a nominally significant correlation between a co-expression module comprising 46 genes and lithium response represented as a continuous (i.e., scale ranging 0–10) phenotype (cor?=??0.299, p =?0.035). Forty-three of these 46 genes had reduced mRNA expression levels in better lithium responders relative to poorer responders, and the central regulators of this module were all mitochondrially-encoded ( MT-ND1 , MT-ATP6 , MT-CYB ). Accordingly, enrichment analyses indicated that genes involved in mitochondrial functioning were heavily over-represented in this module, specifically highlighting the electron transport chain (ETC) and oxidative phosphorylation (OXPHOS) as affected processes. Disrupted ETC and OXPHOS activity have previously been implicated in the pathophysiology of BPAD. Our data adds to previous evidence suggesting that a normalisation of these processes could be central to lithium’s mode of action, and could underlie a favourable therapeutic response.
机译:锂是双相情感障碍(BPAD)的一线治疗,但三分之二的患者仅部分反应或根本没有反应。锂响应的高度可变性的原因尚不十分清楚。全转录组分析,测试基因与环境之间的界面,是探索锂反应变异性分子机制的一种可行方法。因此,在本研究中,我们对n =?50锂治疗的BPAD患者的全血RNA-seq数据进行了共表达网络分析。锂的反应是使用经过充分验证的ALDA量表评估的,该量表用于定义连续和二分法。我们确定了包含46个基因的共表达模块与锂响应之间的名义上显着相关性,锂响应以连续(即,范围为0-10的表)表型表示(cor?=?0.299,p =?0.035)。相对于较弱的响应者,这46个基因中有43个基因的mRNA响应水平降低,较好的锂响应者均被线粒体编码(MT-ND1,MT-ATP6,MT-CYB)。因此,富集分析表明,与线粒体功能有关的基因在该模块中大量过量表达,特别突出了电子传输链(ETC)和氧化磷酸化(OXPHOS)作为受影响的过程。先前已将ETC和OXPHOS活性破坏与BPAD的病理生理联系在一起。我们的数据增加了以前的证据,表明这些过程的正常化可能是锂作用方式的核心,并且可能是良好的治疗反应的基础。

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