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Hoxb1 neural crest preferentially form glia of the PNS.

机译:Hoxb1神经c优先形成PNS的神经胶质。

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摘要

The vertebrate cranial neural crest cells give rise to many complex derivatives of the head, neck, and face, including neuronal and glial cells that act in concert for proper development of the anterior-peripheral nervous system. Several genes have been implicated in the processes of neural crest specification, migration, and differentiation; among these are the hox gene clusters. To determine the fates of hox-expressing cranial neural crest, we describe the results of a genetic lineage analysis by using the Cre/loxP system to drive the activation of different ROSA26 reporter alleles under the regulation of the hoxb1 locus. By targeting the 3' untranslated region of the hoxb1 gene, we have preserved endogenous gene activity and have been able to accurately follow the fates of the cells derived from the hoxb1 expression domain. Emphasis was placed on identifying the cell and tissue types that arise from the rhombomere 4-derived neural crest. Our results demonstrate that, in addition to forming much of the cartilage, bones, and muscle of the ears and neck, a significant population of rhombomere 4-derived neural crest is fated to generate the glial component of the seventh cranial nerve.
机译:脊椎动物的颅神经rest细胞产生许多复杂的头部,颈部和面部衍生物,包括神经元和神经胶质细胞,它们协同作用以促进前周围神经系统的正常发育。几个基因已经牵涉到神经c的规范,迁移和分化过程中。其中有hox基因簇。为了确定表达hox的颅神经波峰的命运,我们描述了遗传谱系分析的结果,该结果通过使用Cre / loxP系统在hoxb1基因座的调控下驱动不同的ROSA26报告基因等位基因激活。通过靶向hoxb1基因的3'非翻译区,我们保留了内源基因的活性,并且能够准确地追踪源自hoxb1表达域的细胞的命运。重点放在确定由rhombomere 4衍生的神经c引起的细胞和组织类型。我们的结果表明,除了形成大部分的软骨,骨头和耳朵和颈部的肌肉外,大量的菱形4衍生的神经rest也注定会产生第七个颅神经的神经胶质成分。

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