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Sending mixed signals: Cilia-dependent signaling during development and disease

机译:发送混合信号:在开发和疾病期间依赖于依赖的信号

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摘要

Molecular signals are the guiding force of development, imparting direction upon cells to divide, migrate, differentiate, etc. The mechanisms by which a cell can receive and transduce these signals into measurable actions remains a 'black box' in developmental biology. Primary cilia are ubiquitous, microtubule-based organelles that dynamically extend from a cell to receive and process molecular and mechanical signaling cues. In the last decade, this organelle has become increasingly intriguing to the research community due to its ability to act as a cellular antenna, receive and transduce molecular stimuli, and initiate a cellular response. In this review, we discuss the structure of primary cilia, emphasizing how the ciliary components contribute to the transduction of signaling pathways. Furthermore, we address how the cilium integrates these signals and conveys them into cellular processes such as proliferation, migration and tissue patterning. Gaining a deeper understanding of the mechanisms used by primary cilia to receive and integrate molecular signals is essential, as it opens the door for the identification of therapeutic targets within the cilium that could alleviate pathological conditions brought on by aberrant molecular signaling.
机译:分子信号是显影的指导力,赋予细胞的方向分开,迁移,分化等。电池可以接收和将这些信号转换成可测量的动作的机制仍然是发育生物学中的“黑匣子”。原发性纤毛是普遍存在的,基于微管的细胞器,其动态地从细胞延伸以接收和处理分子和机械信号线。在过去的十年中,由于其充当蜂窝天线,接受和转换分子刺激的能力,这种细胞器对研究界越来越有兴趣,并引发细胞反应。在本综述中,我们讨论了小纤毛的结构,强调睫状体组分如何有助于转导信号途径。此外,我们解决了纤毛利率如何集成这些信号并将它们传递到细胞过程中,例如增殖,迁移和组织图案化。更深入地了解初级纤毛以接收和整合分子信号的机制是必不可少的,因为它打开了用于鉴定纤毛内的治疗靶标的门,这可以缓解由异常分子信号引起的病理条件。

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