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自闭症 ProSAP1/Shank2 小鼠模型表现出超声波发声的定量和结构异常。

The Autism ProSAP1/Shank2 mouse model displays quantitative and structural abnormalities in ultrasonic vocalisations.

机构信息

Human Genetics and Cognitive Functions, Institut Pasteur, Paris, France; CNRS URA 2182 'Genes, synapses and cognition', Institut Pasteur, Paris, France; University Paris Diderot, Sorbonne Paris Cité, Human Genetics and Cognitive Functions, Paris, France.

出版信息

Behav Brain Res. 2013 Nov 1;256:677-89. doi: 10.1016/j.bbr.2013.08.031. Epub 2013 Aug 28.

Abstract

Mouse ultrasonic vocalisations have been often used as a paradigm to extrapolate vocal communication defects observed in patients with autism spectrum disorders (ASD). The role of these vocalisations as well as their development, structure and informational content, however, remain largely unknown. In the present study, we characterised in depth the emission of pup and adult ultrasonic vocalisations of wild-type mice and their ProSAP1/Shank2(-/-) littermates lacking a synaptic scaffold protein mutated in ASD. We hypothesised that the vocal behaviour of ProSAP1/Shank2(-/-) mice not only differs from the vocal behaviour of their wild-type littermates in a quantitative way, but also presents more qualitative abnormalities in temporal organisation and acoustic structure. We first quantified the rate of emission of ultrasonic vocalisations, and analysed the organisation of vocalisations sequences using Markov models. We subsequently measured duration and peak frequency characteristics of each ultrasonic vocalisation, to characterise their acoustic structure. In wild-type mice, we found a high level of organisation in sequences of ultrasonic vocalisations, suggesting a communicative function in this complex system. Very limited significant sex-related variations were detected in their usage and acoustic structure, even in adult mice. In adult ProSAP1/Shank2(-/-) mice, we found abnormalities in the call usage and the structure of ultrasonic vocalisations. Both ProSAP1/Shank2(-/-) male and female mice uttered less vocalisations with a different call distribution and at lower peak frequency in comparison with wild-type littermates. This study provides a comprehensive framework to characterise abnormalities of ultrasonic vocalisations in mice and confirms that ProSAP1/Shank2(-/-) mice represent a relevant model to study communication defects.

摘要

小鼠超声发声常被用作范例,以推断自闭症谱系障碍(ASD)患者观察到的言语交流缺陷。然而,这些发声的作用及其发展、结构和信息内容在很大程度上仍不清楚。在本研究中,我们深入描述了野生型小鼠及其缺乏 ASD 中突变的突触支架蛋白 ProSAP1/Shank2(-/-) 同窝仔鼠的幼鼠和成年期超声发声的特征。我们假设 ProSAP1/Shank2(-/-) 小鼠的发声行为不仅在数量上与野生型同窝仔鼠的发声行为不同,而且在时间组织和声学结构上也表现出更多的定性异常。我们首先量化了超声发声的发射率,并使用马尔可夫模型分析了发声序列的组织。随后,我们测量了每个超声发声的持续时间和峰值频率特征,以表征其声学结构。在野生型小鼠中,我们发现超声发声序列具有高度的组织性,这表明在这个复杂系统中具有交际功能。即使在成年小鼠中,其使用和声学结构也仅检测到非常有限的显著性别相关变化。在成年 ProSAP1/Shank2(-/-) 小鼠中,我们发现叫声的使用和超声发声的结构存在异常。与野生型同窝仔鼠相比,ProSAP1/Shank2(-/-) 雄性和雌性小鼠发声较少,叫声分布不同,峰值频率较低。这项研究提供了一个全面的框架来描述小鼠超声发声的异常,并证实 ProSAP1/Shank2(-/-) 小鼠是研究交流缺陷的一个相关模型。

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