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Domineering non-autonomy in Vangl1;Vangl2 double mutants demonstrates intercellular PCP signaling in the vertebrate inner ear

机译:Vangl1中的霸气非自主性; Vangl2双突变体在脊椎动物内耳中展示了细胞间PCP信号

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摘要

The organization of polarized stereociliary bundles is critical for the function of the inner ear sensory receptor hair cells that detect sound and motion, and these cells present a striking example of Planar Cell Polarity (PCP); the coordinated orientation of polarized structures within the plane of an epithelium. PCP is best understood in Drosophila where the essential genes regulating PCP were first discovered, and functions for the core PCP proteins encoded by these genes have been deciphered through phenotypic analysis of core PCP gene mutants. One illuminating phenotype is the domineering non-autonomy that is observed where abrupt disruptions in PCP signaling impacts the orientation of neighboring wild type cells, because this demonstrates local intercellular signaling mediated by the core PCP proteins. Using Emx2-Cre to generate an analogous mutant boundary in the mouse inner ear, we disrupted vertebrate PCP signaling in Vangl1;Vangl2 conditional knockouts. Due to unique aspects of vestibular anatomy, core PCP protein distribution along the mutant boundary generated in the utricle resembles the proximal side of yang mutant clones in the Drosophila wing, while the boundary in the saccule resembles and the distal side. Consistent with these protein distributions, a domineering non-autonomy phenotype occurs along the Emx2-Cre boundary in the mutant utricle that does not occur in the saccule. These results further support the hypothesis that core PCP function is conserved in vertebrates by demonstrating intercellular PCP signaling in the sensory epithelia of the mouse ear.
机译:偏振的立体束组织对于检测声和运动的内耳感觉受体毛细胞的功能至关重要,并且这些电池存在平面细胞极性(PCP)的引人注目的例子;上皮平面内极化结构的协调取向。 PCP最好是在果蝇,其中调节所述PCP必需基因首次发现理解,对于由这些基因编码的核心蛋白PCP功能已经通过核心PCP基因的突变体的表型分析破译。一个照明表型是观察到其中PCP突然中断信令影响相邻野生型细胞的定向,因为这表明由核心PCP蛋白介导的局部间信号盛气凌人非自主性。使用EMX2-CRE在鼠标内耳中产生类似的突变边界,我们在Vangl1中扰乱了脊椎动物PCP信号传导; Vangl2条件淘汰。由于前庭解剖学的独特方面,沿着utricle中产生的突变界限的核心PCP蛋白分布类似于果蝇翼的阳突变克隆的近侧,而囊状中的边界类似于远侧。与这些蛋白质分布一致,沿着突变尿素中的突变尿布中的突变界面发生弥漫性的非自治表型,其不会发生在骶孔中。这些结果进一步支持通过在小鼠耳朵的感觉上皮中展示细胞间PCP信号传导来保护核心PCP功能在脊椎动物中保存的假设。

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