首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >In vivo knockdown of Piccolino disrupts presynaptic ribbon morphology in mouse photoreceptor synapses
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In vivo knockdown of Piccolino disrupts presynaptic ribbon morphology in mouse photoreceptor synapses

机译:Piccolino的体内敲低会破坏小鼠感光突触中的突触前色带形态。

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摘要

Piccolo is the largest known cytomatrix protein at active zones of chemical synapses. A growing number of studies on conventional chemical synapses assign Piccolo a role in the recruitment and integration of molecules relevant for both endo- and exocytosis of synaptic vesicles, the dynamic assembly of presynaptic F-actin, as well as the proteostasis of presynaptic proteins, yet a direct function in the structural organization of the active zone has not been uncovered in part due to the expression of multiple alternatively spliced isoforms. We recently identified Piccolino, a Piccolo splice variant specifically expressed in sensory ribbon synapses of the eye and ear. Here we down regulated Piccolino in vivo via an adeno-associated virus-based RNA interference approach and explored the impact on the presynaptic structure of mouse photoreceptor ribbon synapses. Detailed immunocytochemical light and electron microscopical analysis of Piccolino knockdown in photoreceptors revealed a hitherto undescribed photoreceptor ribbon synaptic phenotype with striking morphological changes of synaptic ribbon ultrastructure.
机译:Piccolo是化学突触活动区域中最大的已知细胞基质蛋白。越来越多的常规化学突触研究使Piccolo在与突触小泡的内吞和胞吐有关,突触前F-肌动蛋白的动态装配以及突触前蛋白的蛋白稳定相关分子的募集和整合中发挥了作用。在活动区的结构组织中的直接功能尚未被发现,部分原因是多种多样的剪接同工型的表达。我们最近鉴定了Piccolino,这是一种Piccolo剪接变体,专门在眼睛和耳朵的感觉带状突触中表达。在这里,我们通过基于腺相关病毒的RNA干扰方法下调了体内的Piccolino,并探讨了对小鼠感光带突触的突触前结构的影响。详细的免疫细胞化学光和电子显微镜分析感光器中Piccolino的敲减,揭示了迄今未描述的感光带突触表型,突触带超微结构发生了明显变化。

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