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首页> 外文期刊>Human Molecular Genetics >Retinal interneuron survival requires non-cell-autonomous Atrx activity
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Retinal interneuron survival requires non-cell-autonomous Atrx activity

机译:视网膜中间核生存需要非细胞自主atrx活动

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ATRX is a chromatin remodeling protein that is mutated in several intellectual disability disorders including alpha-thalassemia/mental retardation, X-linked (ATR-X) syndrome. We previously reported the prevalence of ophthalmological defects in ATR-X syndrome patients, and accordingly we find morphological and functional visual abnormalities in a mouse model harboring a mutation occurring in ATR-X patients. The visual system abnormalities observed in these mice parallels the Atrx-null retinal phenotype characterized by interneuron defects and selective loss of amacrine and horizontal cells. The mechanisms that underlie selective neuronal vulnerability and neurodegeneration in the central nervous system upon Atrx mutation or deletion are unknown. To interrogate the cellular specificity of Atrx for its retinal neuroprotective functions, we employed a combination of temporal and lineage-restricted conditional ablation strategies to generate five different conditional knockout mouse models, and subsequently identified a non-cell-autonomous requirement for Atrx in bipolar cells for inhibitory interneuron survival in the retina. Atrx-deficient retinal bipolar cells exhibit functional, structural and molecular alterations consistent with impairments in neuronal activity and connectivity. Gene expression changes in the Atrx-null retina indicate defective synaptic structure and neuronal circuitry, suggest excitotoxic mechanisms of neurodegeneration, and demonstrate that common targets of ATRX in the forebrain and retina may contribute to similar neuropathological processes underlying cognitive impairment and visual dysfunction in ATR-X syndrome.
机译:ATRX是一种染色质改造蛋白质,其在几种智障残疾障碍中突变,包括α-地中海贫血/精神病症,X键(ATR-X)综合征。我们之前报道了ATR-X综合征患者的眼科缺陷的患病率,因此我们在含有ATR-X患者中发生突变的小鼠模型中发现形态和功能性视觉异常。在这些小鼠中观察到的视觉系统异常,使ATRX-NULL视网膜表型表征,其特征在于间可核缺陷和氨基和水平细胞的选择性丧失。在ATRX突变或缺失时,在中枢神经系统中提出选择性神经元脆弱性和神经变性的机制是未知的。为了询问ATRX对其视网膜神经保护功能的细胞特异性,我们采用了时间和谱系限制的条件消融策略的组合,以产生五种不同的条件敲除小鼠模型,随后鉴定了双极细胞中的ATRX的非细胞自主需求用于视网膜的抑制性抑制性。 ATRX缺陷型视网膜双极细胞表现出与神经元活性和连通性损伤一致的功能性,结构和分子改变。 ATRX-NULL Retina的基因表达变化表明突触突触结构和神经元电路有缺陷,提示神经变性的兴奋毒性机制,并证明了前脑和视网膜中ATRX的常见目标可能有助于潜在的认知障碍和ATR视觉功能障碍的类似神经病理过程。 X综合征。

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