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静息态功能磁共振成像测量的丘脑连接与预测丘脑-前额叶基因共表达的多基因指数相关。

Thalamic connectivity measured with fMRI is associated with a polygenic index predicting thalamo-prefrontal gene co-expression.

机构信息

Department of Basic Medical Science, Neuroscience and Sense Organs, University of Bari Aldo Moro, Piazza Giulio Cesare, 11, 70124, Bari, Italy.

Department of Education Science, Psychology and Communication Science, University of Bari Aldo Moro, Bari, Italy.

出版信息

Brain Struct Funct. 2019 Apr;224(3):1331-1344. doi: 10.1007/s00429-019-01843-7. Epub 2019 Feb 6.

Abstract

The functional connectivity between thalamic medio-dorsal nucleus (MD) and cortical regions, especially the dorsolateral prefrontal cortex (DLPFC), is implicated in attentional processing and is anomalous in schizophrenia, a brain disease associated with polygenic risk and attentional deficits. However, the molecular and genetic underpinnings of thalamic connectivity anomalies are unclear. Given that gene co-expression across brain areas promotes synchronous interregional activity, our aim was to investigate whether coordinated expression of genes relevant to schizophrenia in MD and DLPFC may reflect thalamic connectivity anomalies in an attention-related network including the DLPFC. With this aim, we identified in datasets of post-mortem prefrontal mRNA expression from healthy controls a gene module with robust overrepresentation of genes with coordinated MD-DLPFC expression and enriched for schizophrenia genes according to the largest genome-wide association study to date. To link this gene cluster with imaging phenotypes, we computed a Polygenic Co-Expression Index (PCI) combining single-nucleotide polymorphisms predicting module co-expression. Finally, we investigated the association between PCI and thalamic functional connectivity during attention through fMRI Independent Component Analysis in 265 healthy participants. We found that PCI was positively associated with connectivity strength of a thalamic region overlapping with the MD within an attention brain circuit. These findings identify a novel association between schizophrenia-related genes and thalamic functional connectivity. Furthermore, they highlight the association between gene expression co-regulation and brain connectivity, such that genes with coordinated MD-DLPFC expression are associated with coordinated activity between the same brain regions. We suggest that gene co-expression is a plausible mechanism underlying biological phenotypes of schizophrenia.

摘要

丘脑背内侧核(MD)与皮质区域之间的功能连接,特别是背外侧前额叶皮质(DLPFC),与注意力处理有关,在精神分裂症中异常,精神分裂症是一种与多基因风险和注意力缺陷相关的脑部疾病。然而,丘脑连接异常的分子和遗传基础尚不清楚。鉴于脑区之间的基因共表达促进了区域间的同步活动,我们的目的是研究 MD 和 DLPFC 中与精神分裂症相关的基因的协调表达是否反映了包括 DLPFC 在内的与注意力相关网络中的丘脑连接异常。为了实现这一目标,我们在来自健康对照者的死后前额叶 mRNA 表达数据集,确定了一个基因模块,该模块中具有 MD-DLPFC 表达协调的基因具有很强的过表达,并且根据迄今为止最大的全基因组关联研究,富含精神分裂症基因。为了将这个基因簇与成像表型联系起来,我们计算了一个多基因共表达指数(PCI),该指数结合了预测模块共表达的单核苷酸多态性。最后,我们通过 fMRI 独立成分分析,在 265 名健康参与者中研究了 PCI 与注意力期间丘脑功能连接之间的关联。我们发现,PCI 与重叠在注意力大脑回路中的 MD 内的一个丘脑区域的连接强度呈正相关。这些发现确定了精神分裂症相关基因与丘脑功能连接之间的新关联。此外,它们强调了基因表达共调控与大脑连接之间的关联,即具有 MD-DLPFC 表达协调的基因与同一大脑区域之间的协调活动相关。我们认为,基因共表达是精神分裂症生物学表型的一种合理机制。

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