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增强子基因座在 14 号染色体 q23.1 上调节与语言处理相关的大脑不对称颞叶区域。

Enhancer Locus in ch14q23.1 Modulates Brain Asymmetric Temporal Regions Involved in Language Processing.

机构信息

UNATI, Neurospin, Institut Joliot, CEA, Université Paris-Saclay, Gif-sur-Yvette 91191, France.

Cognitive Neuroimaging Unit, U992, INSERM, Neurospin, Institut Joliot, CEA, Université Paris-Saclay, Gif-sur-Yvette 91191, France.

出版信息

Cereb Cortex. 2020 Sep 3;30(10):5322-5332. doi: 10.1093/cercor/bhaa112.

DOI:10.1093/cercor/bhaa112
PMID:32432689
Abstract

Identifying the genes that contribute to the variability in brain regions involved in language processing may shed light on the evolution of brain structures essential to the emergence of language in Homo sapiens. The superior temporal asymmetrical pit (STAP), which is not observed in chimpanzees, represents an ideal phenotype to investigate the genetic variations that support human communication. The left STAP depth was significantly associated with a predicted enhancer annotation located in the 14q23.1 locus, between DACT1 and KIAA0586, in the UK Biobank British discovery sample (N = 16 515). This association was replicated in the IMAGEN cohort (N = 1726) and the UK Biobank non-British validation sample (N = 2161). This genomic region was also associated to a lesser extent with the right STAP depth and the formation of sulcal interruptions, "plis de passage," in the bilateral STAP but not with other structural brain MRI phenotypes, highlighting its notable association with the superior temporal regions. Diffusion MRI emphasized an association with the fractional anisotropy of the left auditory fibers of the corpus callosum and with networks involved in linguistic processing in resting-state functional MRI. Overall, this evidence demonstrates a specific relationship between this locus and the establishment of the superior temporal regions that support human communication.

摘要

确定导致参与语言处理的脑区变异性的基因可能有助于揭示人类语言出现所必需的大脑结构的进化。在黑猩猩中未观察到的上颞不对称凹(STAP)是研究支持人类交流的遗传变异的理想表型。左 STAP 深度与 UK Biobank 英国发现样本中位于 14q23.1 基因座(DACT1 和 KIAA0586 之间)的预测增强子注释显著相关(N=16515)。该关联在 IMAGEN 队列(N=1726)和 UK Biobank 非英国验证样本(N=2161)中得到了复制。该基因组区域也与右 STAP 深度和双侧 STAP 中“plis de passage”脑回中断的形成有一定程度的关联,但与其他结构性脑 MRI 表型无关,突出了其与上颞区的显著关联。弥散 MRI 强调了与左侧胼胝体听纤维的分数各向异性和静息状态功能 MRI 中语言处理网络的关联。总的来说,这些证据表明该基因座与支持人类交流的上颞区的建立之间存在特定关系。

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