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精神分裂症和双相情感障碍的相关遗传学和连接组学电路。

Associated Genetics and Connectomic Circuitry in Schizophrenia and Bipolar Disorder.

机构信息

School of Artificial Intelligence, Beijing University of Posts and Telecommunications, Beijing, China; Department of Complex Trait Genetics, Center for Neurogenomics and Cognitive Research, Amsterdam Neuroscience, Vrije Universiteit Amsterdam, Amsterdam, the Netherlands.

Department of Complex Trait Genetics, Center for Neurogenomics and Cognitive Research, Amsterdam Neuroscience, Vrije Universiteit Amsterdam, Amsterdam, the Netherlands; Department of Sleep and Cognition, Netherlands Institute for Neuroscience, an institute of the Royal Netherlands Academy of Arts and Sciences, Amsterdam, the Netherlands.

出版信息

Biol Psychiatry. 2023 Jul 15;94(2):174-183. doi: 10.1016/j.biopsych.2022.11.006. Epub 2022 Nov 9.

Abstract

BACKGROUND

Schizophrenia (SCZ) and bipolar disorder (BD) are severe psychiatric conditions that can involve symptoms of psychosis and cognitive dysfunction. The 2 conditions share symptomatology and genetic etiology and are regularly hypothesized to share underlying neuropathology. Here, we examined how genetic liability to SCZ and BD shapes normative variations in brain connectivity.

METHODS

We examined the effect of the combined genetic liability for SCZ and BD on brain connectivity from two perspectives. First, we examined the association between polygenic scores for SCZ and BD for 19,778 healthy subjects from the UK Biobank and individual variation in brain structural connectivity reconstructed by means of diffusion weighted imaging data. Second, we conducted genome-wide association studies using genotypic and imaging data from the UK Biobank, taking SCZ-/BD-involved brain circuits as phenotypes of interest.

RESULTS

Our findings showed brain circuits of superior parietal and posterior cingulate regions to be associated with polygenic liability for SCZ and BD, circuitry that overlaps with brain networks involved in disease conditions (r = 0.239, p < .001). Genome-wide association study analysis showed 9 significant genomic loci associated with SCZ-involved circuits and 14 loci associated with BD-involved circuits. Genes related to SCZ-/BD-involved circuits were significantly enriched in gene sets previously reported in genome-wide association studies for SCZ and BD.

CONCLUSIONS

Our findings suggest that polygenic liability of SCZ and BD is associated with normative individual variation in brain circuitry.

摘要

背景

精神分裂症(SCZ)和双相情感障碍(BD)是严重的精神疾病,可涉及精神病症状和认知功能障碍。这两种疾病具有相似的症状和遗传病因,通常被认为具有潜在的神经病理学基础。在这里,我们研究了 SCZ 和 BD 的遗传易感性如何塑造大脑连接的正常变化。

方法

我们从两个角度研究了 SCZ 和 BD 的综合遗传易感性对大脑连接的影响。首先,我们研究了 UK Biobank 中 19778 名健康受试者的 SCZ 和 BD 多基因评分与通过弥散加权成像数据重建的个体大脑结构连接的个体差异之间的关联。其次,我们使用 UK Biobank 的基因型和成像数据进行全基因组关联研究,将 SCZ-/BD 相关的大脑回路作为感兴趣的表型。

结果

我们的研究结果表明,顶叶和后扣带回区域的大脑回路与 SCZ 和 BD 的多基因易感性相关,这些回路与疾病相关的大脑网络重叠(r=0.239,p<.001)。全基因组关联研究分析显示,9 个与 SCZ 相关的大脑回路和 14 个与 BD 相关的大脑回路存在显著的基因组位点。与 SCZ-/BD 相关的大脑回路相关的基因在之前报道的 SCZ 和 BD 的全基因组关联研究中的基因集显著富集。

结论

我们的研究结果表明,SCZ 和 BD 的多基因易感性与大脑回路的正常个体差异有关。

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