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Disruption of the Zdhhc9 intellectual disability gene leads to behavioural abnormalities in a mouse model

机译:Zdhhc9智能障碍基因的破坏导致小鼠模型中的行为异常

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摘要

Protein S-acylation is a widespread post-translational modification that regulates the trafficking and function of a diverse array of proteins. This modification is catalysed by a family of twenty-three zDHHC enzymes that exhibit both specific and overlapping substrate interactions. Mutations in the gene encoding zDHHC9 cause mild-to-moderate intellectual disability, seizures, speech and language impairment, hypoplasia of the corpus callosum and reduced volume of sub-cortical structures. In this study, we have undertaken behavioural phenotyping, magnetic resonance imaging (MRI) and isolation of S-acylated proteins to investigate the effect of disruption of the Zdhhc9 gene in mice in a C57BL/6 genetic background. Zdhhc9 mutant male mice exhibit a range of abnormalities compared with their wild-type littermates: altered behaviour in the open-field test, elevated plus maze and acoustic startle test that is consistent with a reduced anxiety level; a reduced hang time in the hanging wire test that suggests underlying hypotonia but which may also be linked to reduced anxiety; deficits in the Morris water maze test of hippocampal-dependent spatial learning and memory; and a 36% reduction in corpus callosum volume revealed by MRI. Surprisingly, membrane association and S-acylation of H-Ras was not disrupted in either whole brain or hippocampus of Zdhhc9 mutant mice, suggesting that other substrates of this enzyme are linked to the observed changes. Overall, this study highlights a key role for zDHHC9 in brain development and behaviour, and supports the utility of the Zdhhc9 mutant mouse line to investigate molecular and cellular changes linked to intellectual disability and other deficits in the human population.
机译:蛋白质S酰化是一种广泛的翻译后修饰,可调节多种蛋白质的运输和功能。这种修饰是由23种zDHHC酶家族催化的,这些酶同时表现出特定的和重叠的底物相互作用。编码zDHHC9的基因中的突变会导致轻度至中度的智力残疾,癫痫发作,语音和语言障碍,call体发育不全以及皮质下结构体积减少。在这项研究中,我们进行了行为表型,磁共振成像(MRI)和S酰化的蛋白的分离,以研究在C57BL / 6遗传背景下Zdhhc9基因在小鼠中的破坏作用。与野生型同窝仔相比,Zdhhc9突变型雄性小鼠表现出一系列异常:在旷野试验,行为加迷宫试验和听觉惊吓试验中行为的改变与焦虑水平的降低相一致;悬挂线测试中的悬挂时间减少,提示潜在的肌张力低下,但也可能与焦虑减轻有关;海马依赖的空间学习和记忆的莫里斯水迷宫测试中的缺陷; MRI显示call体体积减少了36%。出人意料的是,在Zdhhc9突变小鼠的全脑或海马中,H-Ras的膜缔合和S-酰化均未受到破坏,这表明该酶的其他底物与观察到的变化有关。总的来说,这项研究突出了zDHHC9在大脑发育和行为中的关键作用,并支持Zdhhc9突变小鼠系用于研究与人类智力障碍和其他缺陷相关的分子和细胞变化的效用。

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