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小脑 FOXP1 在小鼠运动和交际行为发育中的作用。

The role of cerebellar FOXP1 in the development of motor and communicative behaviors in mice.

机构信息

Department of Psychological Sciences, University of Connecticut, Storrs, Connecticut, USA.

Murine Behavioral Neurogenetics Facility and Institute of Brain and Behavioral Sciences, University of Connecticut, Storrs, Connecticut, USA.

出版信息

Genes Brain Behav. 2024 Oct;23(5):e70001. doi: 10.1111/gbb.70001.

Abstract

The gene FOXP2 is well established for a role in human speech and language; far less is known about FOXP1. However, this related gene has also been implicated in human language development as well as disorders associated with features of autism spectrum disorder (ASD). FOXP1 protein expression has also recently been identified in the cerebellum-a neural structure previously shown to express FOXP2 protein. The current study sought to elucidate the behavioral implications of a conditional knock-out of Foxp1 using an En1-Cre driver, which is active in the entirety of the cerebellum and a subset of neurons in the midbrain and spinal cord, in mice using a test battery including motor tasks associated with cerebellar dysfunction, as well as communicative and autistic-relevant behaviors. Male and female mice with a conditional knock-out (cKO, n = 31) and wildtype littermate controls (WT, n = 34) were assessed for gross and orofacial motor control, motor-coordination learning, locomotion, social behavior, anxiety, auditory processing and expressive vocalizations. Overall results suggest Foxp1 plays a specific role in the development of communicative systems, and phenotypic expression of disruptions may interact with sex. Robust motor deficits associated with Foxp1 protein loss may particularly affect vocalizations based on significant orofacial motor deficits in cKO subjects could also contribute to vocalization anomalies. In summary, the current study provides key insights into the role of Foxp1 in cerebellar function and associated behaviors in mice, with implications for an improved understanding of communicative and motor-based neurodevelopmental disabilities in humans.

摘要

FOXP2 基因在人类言语和语言中起着重要作用;而对于 FOXP1 基因,我们知之甚少。然而,这个相关基因也与人类语言发展以及自闭症谱系障碍(ASD)的特征相关的障碍有关。FOXP1 蛋白的表达也最近在小脑中被鉴定出来,小脑是一个以前被证明表达 FOXP2 蛋白的神经结构。本研究试图通过使用 En1-Cre 驱动剂(在小脑的全部和中脑和脊髓的一部分神经元中活跃)对 Foxp1 进行条件敲除,来阐明其对行为的影响,该驱动剂在小鼠中使用包括与小脑功能障碍相关的运动任务在内的测试组合,以及交流和自闭症相关的行为。使用条件敲除(cKO,n = 31)和野生型同窝对照(WT,n = 34)的雄性和雌性小鼠进行了大体和口面运动控制、运动协调学习、运动、社交行为、焦虑、听觉处理和表达性发声的评估。总体结果表明,Foxp1 在通讯系统的发育中起着特定的作用,并且破坏的表型表达可能与性别相互作用。与 Foxp1 蛋白缺失相关的严重运动缺陷可能特别影响发声,因为 cKO 受试者中明显的口面运动缺陷也可能导致发声异常。总之,本研究为 Foxp1 在小鼠小脑功能和相关行为中的作用提供了重要的见解,这对于更好地理解人类的通讯和运动为基础的神经发育障碍具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a1f/11479947/c4bc62c8e98b/GBB-23-e70001-g006.jpg

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