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首页> 外文期刊>American Journal of Physiology >The primary cilium as sensor of fluid flow: new building blocks to the model. A Review in the Theme: Cell Signaling: Proteins, Pathways and Mechanisms
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The primary cilium as sensor of fluid flow: new building blocks to the model. A Review in the Theme: Cell Signaling: Proteins, Pathways and Mechanisms

机译:主要纤维作为流体流量传感器:模型的新建筑块。 主题中的审查:细胞信号传导:蛋白质,途径和机制

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摘要

The primary cilium is an extraordinary organelle. For many years, it had the full attention of only a few dedicated scientists fascinated by its uniqueness. Unexpectedly, after decades of obscurity, it has moved very quickly into the limelight with the increasing evidence of its central role in the many genetic variations that lead to what are now known as ciliopathies. These studies implicated unique biological functions of the primary cilium, which are not completely straightforward. In parallel, and initially completely unrelated to the ciliopathies, the primary cilium was characterized functionally as an organelle that makes cells more susceptible to changes in fluid flow. Thus the primary cilium was suggested to function as a flow-sensing device. This characterization has been substantiated for many epithelial cell types over the years. Nevertheless, part of the central mechanism of signal transduction has not been explained, largely because of the substantial technical challenges of working with this delicate organelle. The current review considers the recent advances that allow us to fill some of the holes in the model of signal transduction in cilium-mediated responses to fluid flow and to pursue the physiological implications of this peculiar organelle.
机译:主要纤维是一个非凡的细胞器。多年来,它的全部关注只有少数专门的科学家被唯一的独一无主义。在几十年的默默无闻之后,它已经迅速进入了敏捷,随着其在许多遗传变异中的核心作用的越来越多的证据,导致现在被称为嗜合素疗法的许多遗传变化。这些研究涉及初级纤毛的独特生物学功能,这并不完全直截了当。并行,并且最初与纤毛磷病得出完全无关,主要纤维在功能上表征为细胞器,使细胞更容易受到流体流动变化的影响。因此,建议原纤维化用作流动传感装置。多年来,这种表征已经为许多上皮细胞类型而证实。然而,部分信号转导的部分中央机制尚未解释,主要是因为与这种精致细胞器合作的实质性技术挑战。目前的审查考虑了最近的进展,使我们能够填充纤毛介导的反应中的信号转导模型中的一些孔,并追求该特殊细胞器的生理意义。

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