Pleiotropic effects of a high confidence Autism Spectrum Disorder gene, arid1b, on zebrafish sleep

Q2 Medicine
Fusun Doldur-Balli , Amber J. Zimmerman , Brendan T. Keenan , Zoe Y. Shetty , Struan F.A. Grant , Christoph Seiler , Olivia J. Veatch , Allan I. Pack
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引用次数: 1

Abstract

Sleep fulfills critical functions in neurodevelopment, such as promoting synaptic plasticity, neuronal wiring, and brain connectivity which are critical phenomena in Autism Spectrum Disorder (ASD) pathophysiology. Sleep disturbance, specifically insomnia, accompanies ASD and is associated with more severe core symptoms (e.g., social impairment). It is possible that focusing on identifying effective ways to treat sleep problems can help alleviate other ASD-related symptoms. A body of evidence indicates shared mechanisms and neurobiological substrates between sleep and ASD and investigation of these may inform therapeutic effects of improving sleep at both behavioral and molecular levels. In this study, we tested if sleep and social behavior were different in a zebrafish model with the arid1b gene mutated compared to controls. This gene was selected for study as expert curations conducted for the Simons Foundation for Autism Research Institute (SFARI) Gene database define it is as a ‘high confidence’ ASD gene (i.e., clearly implicated) encoding a chromatin remodeling protein. Homozygous arid1b mutants displayed increased arousability and light sleep compared to their heterozygous and wild type counterparts, based on testing a mechano-acoustic stimulus presenting different vibration frequencies of increasing intensity to detect sleep depth. In addition, decreased social preference was observed in arid1b heterozygous and homozygous mutant zebrafish. The behavioral phenotypes reported in our study are in line with findings from mouse models and human studies and demonstrate the utility of zebrafish as a vertebrate model system with high throughput phenotyping in the investigation of changes in sleep in models relevant to ASD. Furthermore, we demonstrate the importance of including assessments of arousal threshold when studying sleep using in vivo models.

Abstract Image

高置信度自闭症谱系障碍基因arid1b对斑马鱼睡眠的多向性影响
睡眠在神经发育中起着关键作用,如促进突触可塑性、神经元接线和大脑连接,这是自闭症谱系障碍(ASD)病理生理学中的关键现象。睡眠障碍,特别是失眠,伴随着ASD,并与更严重的核心症状(如社交障碍)有关。专注于确定治疗睡眠问题的有效方法可能有助于缓解其他ASD相关症状。大量证据表明,睡眠和ASD之间存在共同的机制和神经生物学基础,对这些机制和基础的研究可能会在行为和分子水平上为改善睡眠的治疗效果提供信息。在这项研究中,我们测试了arid1b基因突变的斑马鱼模型与对照组相比睡眠和社交行为是否不同。选择该基因进行研究是因为西蒙斯自闭症研究所基金会(SFARI)基因数据库的专家策展将其定义为编码染色质重塑蛋白的“高置信度”ASD基因(即明确涉及)。与杂合子和野生型突变体相比,纯合型arid1b突变体表现出更高的可呼吸性和轻度睡眠,这是基于测试机械声刺激来检测睡眠深度,该机械声刺激呈现出强度增加的不同振动频率。此外,在arid1b杂合和纯合突变斑马鱼中观察到社会偏好降低。我们研究中报告的行为表型与小鼠模型和人类研究的结果一致,并证明了斑马鱼作为一种具有高通量表型的脊椎动物模型系统在研究ASD相关模型的睡眠变化方面的实用性。此外,我们证明了在使用体内模型研究睡眠时,包括唤醒阈值评估的重要性。
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来源期刊
Neurobiology of Sleep and Circadian Rhythms
Neurobiology of Sleep and Circadian Rhythms Neuroscience-Behavioral Neuroscience
CiteScore
4.50
自引率
0.00%
发文量
9
审稿时长
69 days
期刊介绍: Neurobiology of Sleep and Circadian Rhythms is a multidisciplinary journal for the publication of original research and review articles on basic and translational research into sleep and circadian rhythms. The journal focuses on topics covering the mechanisms of sleep/wake and circadian regulation from molecular to systems level, and on the functional consequences of sleep and circadian disruption. A key aim of the journal is the translation of basic research findings to understand and treat sleep and circadian disorders. Topics include, but are not limited to: Basic and translational research, Molecular mechanisms, Genetics and epigenetics, Inflammation and immunology, Memory and learning, Neurological and neurodegenerative diseases, Neuropsychopharmacology and neuroendocrinology, Behavioral sleep and circadian disorders, Shiftwork, Social jetlag.
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