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Cilioplasm is a cellular compartment for calcium signaling in response to mechanical and chemical stimuli

机译:胞质是对机械和化学刺激作出反应的钙信号传导的细胞区室

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摘要

Primary cilia with a diameter of ~200 nm have been implicated in development and disease. Calcium signaling within a primary cilium has never been directly visualized and has therefore remained a speculation. Fluid-shear stress and dopamine receptor type-5 (DR5) agonist are among the few stimuli that require cilia for intracellular calcium signal transduction. However, it is not known if these stimuli initiate calcium signaling within the cilium, or if the calcium signal originates in the cytoplasm. Using an integrated single-cell imaging technique, we demonstrate for the first time that calcium signaling triggered by fluid-shear stress initiates in the primary cilium and can be distinguished from the subsequent cytosolic calcium response through the ryanodine receptor. Importantly, this flow-induced calcium signaling depends on the ciliary polycystin-2 calcium channel. While DR5-specific agonist induces calcium signaling mainly in the cilioplasm via ciliary CaV1.2, thrombin specifically induces cytosolic calcium signaling through the IP3 receptor. Furthermore, a non-specific calcium ionophore triggers both ciliary and cytosolic calcium responses. We suggest that cilia not only act as sensory organelles but also function as calcium signaling compartments. Cilium-dependent signaling can spread to the cytoplasm or be contained within the cilioplasm. Our study also provides the first model to understand signaling within the cilioplasm of a living cell.
机译:直径约200 nm的原发性纤毛与发育和疾病有关。初级纤毛内的钙信号从未被直接观察到,因此一直是一种推测。流体剪切应力和5型多巴胺受体(DR5)激动剂是少数需要纤毛进行细胞内钙信号传导的刺激物。但是,尚不清楚这些刺激是否在纤毛内引发钙信号传导,或者钙信号是否起源于细胞质。使用集成的单细胞成像技术,我们首次证明了由流体剪切应力触发的钙信号传导在初级纤毛中启动,并且可以与随后的通过ryanodine受体的胞浆钙反应区分开。重要的是,这种血流诱导的钙信号传导取决于睫状多囊藻蛋白2钙通道。 DR5特异性激动剂主要通过纤毛CaV1.2在纤毛中诱导钙信号传导,而凝血酶则通过IP3受体特异性诱导胞质钙信号传导。此外,非特异性钙离子载体同时触发纤毛和胞质钙反应。我们建议纤毛不仅充当感觉细胞器,而且还充当钙信号传导区室。 Cilium依赖的信号传导可以扩散到细胞质或包含在纤毛质中。我们的研究还提供了第一个模型来了解活细胞纤毛内的信号传导。

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