A Mouse Mutation That Dysregulates Neighboring Galnt17 and Auts2 Genes Is Associated with Phenotypes Related to the Human AUTS2 Syndrome.

P Anne Weisner, Chih-Ying Chen, Younguk Sun, Jennifer Yoo, Wei-Chun Kao, Huimin Zhang, Emily T Baltz, Joseph M Troy, Lisa Stubbs
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引用次数: 4

Abstract

AUTS2 was originally discovered as the gene disrupted by a translocation in human twins with Autism spectrum disorder, intellectual disability, and epilepsy. Since that initial finding, AUTS2-linked mutations and variants have been associated with a very broad array of neuropsychiatric disorders, sugg esting that AUTS2 is required for fundamental steps of neurodevelopment. However, genotype-phenotype correlations in this region are complicated, because most mutations could also involve neighboring genes. Of particular interest is the nearest downstream neighbor of AUTS2, GALNT17, which encodes a brain-expressed N-acetylgalactosaminyltransferase of unknown brain function. Here we describe a mouse (Mus musculus) mutation, T(5G2;8A1)GSO (abbreviated 16Gso), a reciprocal translocation that breaks between Auts2 and Galnt17 and dysregulates both genes. Despite this complex regulatory effect, 16Gso homozygotes model certain human AUTS2-linked phenotypes very well. In addition to abnormalities in growth, craniofacial structure, learning and memory, and behavior, 16Gso homozygotes display distinct pathologies of the cerebellum and hippocampus that are similar to those associated with autism and other types of AUTS2-linked neurological disease. Analyzing mutant cerebellar and hippocampal transcriptomes to explain this pathology, we identified disturbances in pathways related to neuron and synapse maturation, neurotransmitter signaling, and cellular stress, suggesting possible cellular mechanisms. These pathways, coupled with the translocation's selective effects on Auts2 isoforms and coordinated dysregulation of Galnt17, suggest novel hypotheses regarding the etiology of the human "AUTS2 syndrome" and the wide array of neurodevelopmental disorders linked to variance in this genomic region.

一种可导致邻近 Galnt17 和 Auts2 基因失调的小鼠突变与人类 AUTS2 综合征的相关表型有关。
AUTS2 最初是在患有自闭症谱系障碍、智力障碍和癫痫的人类双胞胎中被发现的易位基因。自这一最初发现以来,AUTS2 基因突变和变异已与多种神经精神疾病相关,表明 AUTS2 是神经发育基本步骤的必需基因。然而,这一区域的基因型与表型的相关性非常复杂,因为大多数突变也可能涉及邻近的基因。尤其令人感兴趣的是 AUTS2 的最近下游邻近基因 GALNT17,它编码一种脑表达的 N-乙酰半乳糖氨基转移酶,其脑功能未知。在这里,我们描述了一种小鼠(Mus musculus)基因突变--T(5G2;8A1)GSO(缩写为 16Gso),这是一种在 Auts2 和 Galnt17 之间断裂并使这两个基因失调的互作易位。尽管存在这种复杂的调控效应,16Gso 同卵基因仍能很好地模拟某些与人类 AUTS2 相关的表型。除了在生长、颅面结构、学习和记忆以及行为方面的异常外,16Gso 基因同源染色体还显示出小脑和海马的明显病变,这些病变与自闭症和其他类型的 AUTS2 相关神经疾病相关。为了解释这种病理变化,我们分析了突变小脑和海马转录组,发现与神经元和突触成熟、神经递质信号转导和细胞应激有关的通路出现了紊乱,这提示了可能的细胞机制。这些通路,加上易位对 Auts2 同工酶的选择性影响和 Galnt17 的协调失调,为人类 "AUTS2 综合征 "以及与该基因组区域变异相关的一系列神经发育障碍的病因提出了新的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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