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平面细胞极性基因Vangl2上一个新的化学诱导等位基因的鉴定与表征。

Identification and characterization of a novel chemically induced allele at the planar cell polarity gene Vangl2.

作者信息

El-Hassan Abdul-Rahman, Leung Vicki, Kharfallah Fares, Guyot Marie-Claude, Allache Redouane, Gros Philippe, Kibar Zoha

机构信息

CHU Sainte-Justine Research Center, Montréal, QC, Canada.

Department of Neurosciences, Université de Montréal, Montréal, QC, Canada.

出版信息

Mamm Genome. 2018 Apr;29(3-4):229-244. doi: 10.1007/s00335-017-9721-8. Epub 2017 Oct 24.

Abstract

Planar cell polarity (PCP) signaling controls a number of morphogenetic processes including convergent extension during gastrulation and neural tube formation. Defects in this pathway cause neural tube defects (NTD), the most common malformations of the central nervous system. The Looptail (Lp) mutant mouse was the first mammalian mutant implicating a PCP gene (Vangl2) in the pathogenesis of NTD. We report on a novel chemically induced mutant allele at Vangl2 called Curly Bob that causes a missense mutation p.Ile268Asn (I268N) in the Vangl2 protein. This mutant segregates in a semi-dominant fashion with heterozygote mice displaying a looped tail appearance, bobbing head, and a circling behavior. Homozygote mutant embryos suffer from a severe form of NTD called craniorachischisis, severe PCP defects in the inner hair cells of the cochlea and posterior cristae, and display a distinct defect in retinal axon guidance. This mutant genetically interacts with the Lp allele (Vangl2 ) in neural tube development and inner ear hair cell polarity. The Vangl2 protein variant is expressed at very low levels in affected neural and retinal tissues of mutant homozygote embryos. Biochemical studies show that Vangl2 exhibits impaired targeting to the plasma membrane and accumulates in the endoplasmic reticulum. The Vangl2 variant no longer physically interacts with its PCP partner DVL3 and has a reduced protein half-life. This mutant provides an important model for dissecting the role of Vangl2 in the development of the neural tube, establishment of polarity of sensory cells of the auditory and vestibular systems, and retinal axon guidance.

摘要

平面细胞极性(PCP)信号传导控制着许多形态发生过程,包括原肠胚形成和神经管形成过程中的汇聚延伸。该信号通路的缺陷会导致神经管缺陷(NTD),这是中枢神经系统最常见的畸形。卷尾(Lp)突变小鼠是首个将PCP基因(Vangl2)与NTD发病机制联系起来的哺乳动物突变体。我们报道了一种新的化学诱导的Vangl2突变等位基因,名为Curly Bob,它在Vangl2蛋白中导致了一个错义突变p.Ile268Asn(I268N)。该突变以半显性方式分离,杂合子小鼠表现出卷尾外观、点头和转圈行为。纯合子突变胚胎患有严重形式的NTD,称为颅脊柱裂,耳蜗内毛细胞和后半规管嵴存在严重的PCP缺陷,并在视网膜轴突导向方面表现出明显缺陷。该突变体在神经管发育和内耳毛细胞极性方面与Lp等位基因(Vangl2 )发生遗传相互作用。Vangl2蛋白变体在突变纯合子胚胎受影响的神经和视网膜组织中表达水平极低。生化研究表明,Vangl2向质膜的靶向作用受损,并在内质网中积累。Vangl2变体不再与其PCP伙伴DVL3发生物理相互作用,且蛋白质半衰期缩短。该突变体为剖析Vangl2在神经管发育、听觉和前庭系统感觉细胞极性建立以及视网膜轴突导向中的作用提供了一个重要模型。

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