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在严重的言语和语言障碍中,大脑发育过程中FOXP2的表达与成人病理学部位相符。

FOXP2 expression during brain development coincides with adult sites of pathology in a severe speech and language disorder.

作者信息

Lai Cecilia S L, Gerrelli Dianne, Monaco Anthony P, Fisher Simon E, Copp Andrew J

机构信息

Neural Development Unit, Institute of Child Health, University College London, UK.

出版信息

Brain. 2003 Nov;126(Pt 11):2455-62. doi: 10.1093/brain/awg247. Epub 2003 Jul 22.

Abstract

Disruption of FOXP2, a gene encoding a forkhead-domain transcription factor, causes a severe developmental disorder of verbal communication, involving profound articulation deficits, accompanied by linguistic and grammatical impairments. Investigation of the neural basis of this disorder has been limited previously to neuroimaging of affected children and adults. The discovery of the gene responsible, FOXP2, offers a unique opportunity to explore the relevant neural mechanisms from a molecular perspective. In the present study, we have determined the detailed spatial and temporal expression pattern of FOXP2 mRNA in the developing brain of mouse and human. We find expression in several structures including the cortical plate, basal ganglia, thalamus, inferior olives and cerebellum. These data support a role for FOXP2 in the development of corticostriatal and olivocerebellar circuits involved in motor control. We find intriguing concordance between regions of early expression and later sites of pathology suggested by neuroimaging. Moreover, the homologous pattern of FOXP2/Foxp2 expression in human and mouse argues for a role for this gene in development of motor-related circuits throughout mammalian species. Overall, this study provides support for the hypothesis that impairments in sequencing of movement and procedural learning might be central to the FOXP2-related speech and language disorder.

摘要

叉头框蛋白P2(FOXP2)基因编码一种叉头结构域转录因子,该基因的破坏会导致严重的言语交流发育障碍,包括严重的发音缺陷,并伴有语言和语法障碍。此前,对这种障碍神经基础的研究仅限于对患病儿童和成人的神经成像。负责该障碍的基因FOXP2的发现,为从分子角度探索相关神经机制提供了独特的机会。在本研究中,我们确定了FOXP2 mRNA在小鼠和人类发育大脑中的详细时空表达模式。我们发现其在包括皮质板、基底神经节、丘脑、下橄榄核和小脑在内的多个结构中表达。这些数据支持FOXP2在参与运动控制的皮质纹状体和橄榄小脑回路发育中的作用。我们发现早期表达区域与神经成像提示的后期病理部位之间存在有趣的一致性。此外,人类和小鼠中FOXP2/Foxp2的同源表达模式表明该基因在整个哺乳动物物种的运动相关回路发育中发挥作用。总体而言,本研究为以下假设提供了支持:运动序列和程序学习的损伤可能是FOXP2相关言语和语言障碍的核心。

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