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Loss of Bardet-Biedl syndrome proteins causes synaptic aberrations in principal neurons

机译:Bardet-Biedl综合征蛋白的丢失导致主要神经元的突触畸变

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摘要

Bardet-Biedl syndrome (BBS), a ciliopathy, is a rare genetic condition characterised by retinal degeneration, obesity, kidney failure, and cognitive impairment. In spite of progress made in our general understanding of BBS aetiology, the molecular and cellular mechanisms underlying cognitive impairment in BBS remain elusive. Here, we report that the loss of BBS proteins causes synaptic dysfunction in principal neurons, providing a possible explanation for the cognitive impairment phenotype observed in BBS patients. Using synaptosomal proteomics and immunocytochemistry, we demonstrate the presence of Bbs proteins in the postsynaptic density (PSD) of hippocampal neurons. Loss of Bbs results in a significant reduction of dendritic spines in principal neurons of Bbs mouse models. Furthermore, we show that spine deficiency correlates with events that destabilise spine architecture, such as impaired spine membrane receptor signalling, known to be involved in the maintenance of dendritic spines. Our findings suggest a role for BBS proteins in dendritic spine homeostasis that may be linked to the cognitive phenotype observed in BBS. In Bardet-Biedl syndrome (BBS), mutations that affect the function of primary cilia cause retinal degeneration, obesity, kidney failure, and cognitive impairment. The cognitive impairment has yet to be explained, but this study shows that loss of BBS proteins causes synaptic aberrations in principal neurons and can be partially rescued by aerobic exercise.
机译:Bardet-Biedl综合征(BBS)是一种睫状病变,是一种罕见的遗传疾病,其特征是视网膜变性,肥胖,肾衰竭和认知障碍。尽管我们对BBS病因学的一般理解取得了进展,但BBS认知障碍的分子和细胞机制仍然难以捉摸。在这里,我们报告BBS蛋白的丢失会导致主要神经元的突触功能障碍,这为在BBS患者中观察到的认知障碍表型提供了可能的解释。使用突触体蛋白组学和免疫细胞化学,我们证明了海马神经元突触后密度(PSD)中Bbs蛋白的存在。 Bbs的损失导致Bbs小鼠模型的主要神经元中的树突棘明显减少。此外,我们表明,脊柱缺乏症与破坏脊柱结构的事件相关,例如受损的脊柱膜受体信号传导,已知与维持树突棘有关。我们的研究结果表明BBS蛋白在树突棘稳态中的作用,可能与在BBS中观察到的认知表型有关。在Bardet-Biedl综合征(BBS)中,影响原发纤毛功能的突变会导致视网膜变性,肥胖,肾衰竭和认知障碍。认知障碍尚待解释,但这项研究表明,BBS蛋白的丢失会导致主要神经元的突触畸变,并且可以通过有氧运动得到部分挽救。

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