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首页> 外文期刊>BMC Developmental Biology >The novel mouse mutant, chuzhoi, has disruption of Ptk7 protein and exhibits defects in neural tube, heart and lung development and abnormal planar cell polarity in the ear
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The novel mouse mutant, chuzhoi, has disruption of Ptk7 protein and exhibits defects in neural tube, heart and lung development and abnormal planar cell polarity in the ear

机译:新型小鼠突变体chuzhoi具有Ptk7蛋白破坏,并在神经管,心脏和肺部发育以及耳朵中的平面细胞极性异常方面表现出缺陷

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Background The planar cell polarity (PCP) signalling pathway is fundamental to a number of key developmental events, including initiation of neural tube closure. Disruption of the PCP pathway causes the severe neural tube defect of craniorachischisis, in which almost the entire brain and spinal cord fails to close. Identification of mouse mutants with craniorachischisis has proven a powerful way of identifying molecules that are components or regulators of the PCP pathway. In addition, identification of an allelic series of mutants, including hypomorphs and neomorphs in addition to complete nulls, can provide novel genetic tools to help elucidate the function of the PCP proteins. Results We report the identification of a new N-ethyl-N-nitrosourea (ENU)-induced mutant with craniorachischisis, which we have named chuzhoi (chz). We demonstrate that chuzhoi mutant embryos fail to undergo initiation of neural tube closure, and have characteristics consistent with defective convergent extension. These characteristics include a broadened midline and reduced rate of increase of their length-to-width ratio. In addition, we demonstrate disruption in the orientation of outer hair cells in the inner ear, and defects in heart and lung development in chuzhoi mutants. We demonstrate a genetic interaction between chuzhoi mutants and both Vangl2Lp and Celsr1Crsh mutants, strengthening the hypothesis that chuzhoi is involved in regulating the PCP pathway. We demonstrate that chuzhoi maps to Chromosome 17 and carries a splice site mutation in Ptk7. This mutation results in the insertion of three amino acids into the Ptk7 protein and causes disruption of Ptk7 protein expression in chuzhoi mutants. Conclusions The chuzhoi mutant provides an additional genetic resource to help investigate the developmental basis of several congenital abnormalities including neural tube, heart and lung defects and their relationship to disruption of PCP. The chuzhoi mutation differentially affects the expression levels of the two Ptk7 protein isoforms and, while some Ptk7 protein can still be detected at the membrane, chuzhoi mutants demonstrate a significant reduction in membrane localization of Ptk7 protein. This mutant provides a useful tool to allow future studies aimed at understanding the molecular function of Ptk7.
机译:背景技术平面细胞极性(PCP)信号传导途径是许多关键发育事件(包括启动神经管闭合)的基础。 PCP途径的破坏会导致严重的颅achi裂神经管缺陷,其中几乎整个大脑和脊髓都无法闭合。已证明鉴定具有颅achi虫病的小鼠突变体是鉴定作为PCP途径组分或调节剂的分子的有效方法。另外,鉴定等位基因系列的突变体,除了完全无效,还包括亚同型和新型,可以提供新颖的遗传工具,以帮助阐明PCP蛋白的功能。结果我们报告了鉴定出一个新的由N-乙基-N-亚硝基脲(ENU)诱导的颅骨achi裂的突变体,我们将其命名为chuzhoi(chz)。我们证明chuzhoi突变体胚胎无法进行神经管闭合的启动,并具有与缺陷收敛延伸一致的特征。这些特征包括中线变宽和其长宽比增加率降低。此外,我们证明了内耳中外毛细胞的取向受到破坏,并且chuzhoi突变体的心脏和肺部发育出现缺陷。我们证明了chuzhoi突变体与Vangl2 Lp 和Celsr1 Crsh 突变体之间的遗传相互作用,加强了chuzhoi参与调节PCP途径的假说。我们证明chuzhoi映射到17号染色​​体,并在Ptk7中携带一个剪接位点突变。该突变导致在Ptk7蛋白中插入了三个氨基酸,并导致chuzhoi突变体中Ptk7蛋白的表达受到破坏。结论chuzhoi突变体提供了额外的遗传资源,可帮助研究先天性异常的发展基础,包括神经管,心脏和肺部缺陷及其与PCP破坏的关系。 chuzhoi突变差异影响两种Ptk7蛋白同工型的表达水平,尽管仍可以在膜上检测到某些Ptk7蛋白,但chuzhoi突变体显示Ptk7蛋白在膜上的定位显着降低。该突变体提供了有用的工具,可用于未来旨在了解Ptk7分子功能的研究。

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