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Planar cell polarity in Drosophila

机译:果蝇中的平面细胞极性

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摘要

In all multicellular organisms, epithelial cells are not only polarized along the apical-basal axis, but also within the epithelial plane, giving cells a sense of direction. Planar cell polarity (PCP) signaling regulates establishment of polarity within the plane of an epithelium. The outcomes of PCP signaling are diverse and include the determination of cell fates, the generation of asymmetric but highly aligned structures, such as the stereocilia in the human inner ear or the hairs on a fly wing, or the directional migration of cells during convergence and extension during vertebrate gastrulation. In humans, aberrant PCP signaling can result in severe developmental defects, such as open neural tubes (spina bifida), and can cause cystic kidneys. In this review, we discuss the basic mechanism and more recent findings of PCP signaling focusing on Drosophila melanogaster, the model organism in which most key PCP components were initially identified.
机译:在所有多细胞生物中,上皮细胞不仅沿顶基轴极化,而且在上皮平面内极化,从而赋予细胞方向感。平面细胞极性(PCP)信号调节上皮平面内极性的建立。 PCP信号转导的结果是多种多样的,包括细胞命运的确定,不对称但高度对齐的结构的生成,例如人内耳中的立体纤毛或蝇翅上的毛发,或细胞在融合和转移过程中的定向迁移。脊椎动物气化过程中的延伸。在人类中,异常的PCP信号传导可导致严重的发育缺陷,例如开放的神经管(脊柱裂),并可引起囊性肾脏。在这篇综述中,我们讨论了以果蝇果蝇(Drosophila melanogaster)为基础的PCP信号传导的基本机理和最新发现,果蝇是最初鉴定出大多数关键PCP成分的模型生物。

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