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主要穹窿蛋白是 16p11.2 微缺失综合征的候选基因,对于视觉皮层可塑性的稳态调节是必需的。

Major Vault Protein, a Candidate Gene in 16p11.2 Microdeletion Syndrome, Is Required for the Homeostatic Regulation of Visual Cortical Plasticity.

机构信息

Department of Brain and Cognitive Sciences, Picower Institute for Learning and Memory, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139 and.

Department of Medical Oncology, Erasmus MC Cancer Institute, Erasmus University Medical Center, 3015 CN Rotterdam, The Netherlands.

出版信息

J Neurosci. 2018 Apr 18;38(16):3890-3900. doi: 10.1523/JNEUROSCI.2034-17.2018. Epub 2018 Mar 14.

Abstract

Microdeletion of a region in chromosome 16p11.2 increases susceptibility to autism. Although this region contains exons of 29 genes, disrupting only a small segment of the region, which spans five genes, is sufficient to cause autistic traits. One candidate gene in this critical segment is , which encodes for the major vault protein (MVP) that has been implicated in regulation of cellular transport mechanisms. MVP expression levels in mice closely phenocopy those of 16p11.2 mutant mice, suggesting that mice may serve as a model of MVP function in 16p11.2 microdeletion. Here we show that MVP regulates the homeostatic component of ocular dominance (OD) plasticity in primary visual cortex. mice of both sexes show impairment in strengthening of open-eye responses after several days of monocular deprivation (MD), whereas closed-eye responses are weakened as normal, resulting in reduced overall OD plasticity. The frequency of miniature EPSCs (mEPSCs) in pyramidal neurons is decreased in mice after extended MD, suggesting a reduction of functional synapses. Correspondingly, upregulation of surface GluA1 AMPA receptors is reduced in mice after extended MD, and is accompanied by altered expression of STAT1 and phosphorylated ERK, which have been previously implicated in OD plasticity. Normalization of STAT1 levels by introducing STAT1 shRNA rescues surface GluA1 and open-eye responses, implicating STAT1 as a downstream effector of MVP. These findings demonstrate a specific role for MVP as a key molecule influencing the homeostatic component of activity-dependent synaptic plasticity, and potentially the corresponding phenotypes of 16p11.2 microdeletion syndrome. Major vault protein (MVP), a candidate gene in 16p11.2 microdeletion syndrome, has been implicated in the regulation of several cellular processes including transport mechanisms and scaffold signaling. However, its role in brain function and plasticity remains unknown. In this study, we identified MVP as an important regulator of the homeostatic component of experience-dependent plasticity, via regulation of STAT1 and ERK signaling. This study helps reveal a new mechanism for an autism-related gene in brain function, and suggests a broader role for neuro-immune interactions in circuit level plasticity. Importantly, our findings might explain specific components of the pathophysiology of 16p11.2 microdeletion syndrome.

摘要

16p11.2 染色体微缺失增加自闭症易感性。虽然该区域包含 29 个基因的外显子,但仅破坏该区域跨越五个基因的一小段就足以导致自闭症特征。这个关键区域的一个候选基因是 ,它编码主要穹窿蛋白 (MVP),该蛋白已被牵连到细胞运输机制的调节中。MVP 在 小鼠中的表达水平与 16p11.2 突变小鼠的表达水平非常相似,这表明 小鼠可能是 16p11.2 微缺失中 MVP 功能的模型。在这里,我们表明 MVP 调节初级视皮层中眼优势 (OD) 可塑性的稳态成分。雌雄 小鼠在单眼剥夺 (MD) 数天后表现出开放眼反应增强的障碍,而闭眼反应正常减弱,导致整体 OD 可塑性降低。延长 MD 后, 小鼠的锥体神经元中微小 EPSC (mEPSC) 的频率降低,表明功能性突触减少。相应地,延长 MD 后, 小鼠的表面 GluA1 AMPA 受体上调减少,并且伴随着 STAT1 和磷酸化 ERK 的表达改变,这些先前已被牵连到 OD 可塑性中。通过引入 STAT1 shRNA 使 STAT1 水平正常化可挽救表面 GluA1 和开放眼反应,表明 STAT1 是 MVP 的下游效应物。这些发现表明 MVP 作为影响活动依赖性突触可塑性的稳态成分的关键分子的特定作用,并且可能是 16p11.2 微缺失综合征的相应表型。16p11.2 微缺失综合征的候选基因主要穹窿蛋白 (MVP) 已被牵连到包括运输机制和支架信号在内的几个细胞过程的调节中。然而,其在大脑功能和可塑性中的作用仍然未知。在这项研究中,我们通过调节 STAT1 和 ERK 信号发现 MVP 是经验依赖性可塑性的稳态成分的重要调节剂。这项研究有助于揭示与自闭症相关基因在大脑功能中的新机制,并表明神经免疫相互作用在电路水平可塑性中的更广泛作用。重要的是,我们的发现可能解释了 16p11.2 微缺失综合征的病理生理学的特定成分。

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