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首页> 外文期刊>Development >Functional conservation of atonal and Math1 in the CNS and PNS.
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Functional conservation of atonal and Math1 in the CNS and PNS.

机译:CNS和PNS中非调性蛋白和Math1的功能保守性。

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To determine the extent to which atonal and its mouse homolog Math1 exhibit functional conservation, we inserted (beta)-galactosidase (lacZ) into the Math1 locus and analyzed its expression, evaluated consequences of loss of Math1 function, and expressed Math1 in atonal mutant flies. lacZ under the control of Math1 regulatory elements duplicated the previously known expression pattern of Math1 in the CNS (i.e., the neural tube, dorsal spinal cord, brainstem, and cerebellar external granule neurons) but also revealed new sites of expression: PNS mechanoreceptors (inner ear hair cells and Merkel cells) and articular chondrocytes. Expressing Math1 induced ectopic chordotonal organs (CHOs) in wild-type flies and partially rescued CHO loss in atonal mutant embryos. These data demonstrate that both the mouse and fly homologs encode lineage identity information and, more interestingly, that some of the cells dependent on this information serve similar mechanoreceptor functions.
机译:为了确定无声子及其小鼠同源物Math1表现出功能保守性的程度,我们将β-半乳糖苷酶(lacZ)插入到Math1基因座中,并分析了其表达,评估了Math1功能丧失的后果,并在无声子突变果蝇中表达了Math1 。在Math1调控元件控制下的lacZ复制了CNS中先前已知的Math1表达模式(即神经管,脊髓背侧,脑干和小脑外部颗粒神经元),但还揭示了新的表达位点:PNS机械感受器(内部耳毛细胞和默克尔细胞)和关节软骨细胞。在野生型果蝇中表达Math1诱导的异位的弦索器官(CHO),并在无声突变胚胎中部分挽救了CHO的丢失。这些数据表明,小鼠和飞行同源物都编码谱系身份信息,更有趣的是,依赖于该信息的某些细胞具有类似的机械感受器功能。

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