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Duration of fusion pore opening and the amount of hormone released are regulated by myosin II during kiss-and-run exocytosis

机译:接吻运行时胞吐过程中,肌球蛋白II调节融合孔的开放时间和释放的激素量

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pSince the fusion pore of the secretory vesicle is resealed before complete dilation during ‘kiss-and-run’ exocytosis, their cargoes are not completely released. Although the transient fusion pore is kept open for several seconds, the precise mechanisms that control fusion pore maintenance, and their physiological significance, are not well understood. Using dual-colour TIRF (total internal reflection fluorescence) microscopy in neuroendocrine PC12 cells, we show that myosin II regulates the fusion pore dynamics during kiss-and-run exocytosis. The release kinetics of mRFP (monomeric red fluorescent protein)-tagged tPA (tissue plasminogen activator) and Venus-tagged BDNF (brain-derived neurotrophic factor), which show slower release kinetics than NPY (neuropeptide Y)–mRFP and insulin–mRFP, were prolonged by the overexpression of a wild-type form of the RLC (myosin II regulatory light chain). In contrast, overexpression of a dominant-negative form of RLC shortened the release kinetics. Using spH (synapto-pHluorin), a green fluorescent protein-based pH sensor inside the vesicles, we confirmed that the modulation of the release kinetics by myosin II is due to changes in the duration of fusion pore opening. In addition, we revealed that the amount of hormone released into the extracellular space upon stimulation was increased by overexpression of wild-type RLC. We propose that the duration of fusion pore opening is regulated by myosin II to control the amount of hormone released from a single vesicle./p
机译:>由于在“亲密接触”的胞吐过程中,囊泡的融合孔在完全扩张之前被重新密封,因此其货物并未完全释放。尽管瞬态融合孔保持打开状态几秒钟,但控制融合孔维持的精确机制及其生理意义尚未得到很好的理解。在神经内分泌PC12细胞中使用双色TIRF(全内反射荧光)显微镜检查,我们发现肌球蛋白II在接吻运行的胞吐过程中调节融合孔动力学。带有mRFP(单体红色荧光蛋白)标记的tPA(组织纤溶酶原激活物)和带有维纳斯标记的BDNF(脑源性神经营养因子)的释放动力学比NPY(神经肽Y)-mRFP和胰岛素-mRFP的释放动力学慢, RLC(肌球蛋白II调节轻链)的野生型形式的过度表达延长了。相反,RLC显性-阴性形式的过表达缩短了释放动力学。使用spH(突触pHluorin),一种基于绿色荧光蛋白的囊泡内的pH传感器,我们证实了肌球蛋白II对释放动力学的调节是由于融合孔开放时间的变化。此外,我们揭示了野生型RLC的过表达增加了刺激后释放到细胞外空间的激素的量。我们建议通过肌球蛋白II调节融合孔的开放时间,以控制从单个囊泡释放的激素的量。

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