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[大鼠和猫脑中的神经元孔体]

[Neuronal porosome in the rat and cat brain].

作者信息

Okuneva V G, Dzhaparidze N D, Kotariia N T, Zhvaniia M G

出版信息

Tsitologiia. 2012;54(4):324-8.

Abstract

It is well established that during cell secretion, membrane-bound secretory vesicles dock and fuse at the base of supramolecular cup-shaped structures at the cell plasma membrane called "porosomes", to expel intra-vesicular contents to the outside. In neurons, it has been demonstrated that 12-17 nm cup-shaped lipoprotein structure possessing a central plug are present at the presynaptic membrane, where 50 nm in diameter synaptic vesicles transiently dock and fuse to release neurotransmitter. In the past decade, the neuronal porosome has been isolated and its major chemical composition determined. Additionally, the porosome has been both structurally and functionally reconstituted into artificial lipid membrane, establishing its role as the secretory portal in neurons. Studies utilizing atomic force and electron microscopy, combined with electron density and 3D contour mapping, provide at the nanoscale, the structure and assembly of proteins within the neuronal porosome. In the current study, ultrahigh resolution imaging of the presynaptic membrane of isolated brains from both rats and cats, demonstrate for the first time, the presence of neuronal porosomes in cat brain, and further confirms the presence of porosomes at the presynaptic membrane in rat brain synaptosomes. Results from the present study further confirm the cup-shaped morphology of porosomes in the rat brain, and demonstrates their similar shape and size in the cat nerve terminal. The study also demonstrates for the first time, the universal presence of similar porosomes in different species of mammals.

摘要

众所周知,在细胞分泌过程中,膜结合分泌囊泡会停靠并融合在细胞质膜上称为“孔体”的超分子杯状结构的基部,以将囊泡内的内容物排出到细胞外。在神经元中,已经证明在突触前膜存在具有中央塞子的12 - 17纳米杯状脂蛋白结构,直径50纳米的突触囊泡会在此处短暂停靠并融合以释放神经递质。在过去十年中,神经元孔体已被分离出来并确定了其主要化学成分。此外,孔体已在结构和功能上被重组到人工脂质膜中,确立了其作为神经元分泌门户的作用。利用原子力显微镜和电子显微镜,结合电子密度和三维轮廓映射的研究,在纳米尺度上提供了神经元孔体内蛋白质的结构和组装情况。在当前研究中,对大鼠和猫的离体大脑突触前膜进行的超高分辨率成像首次证明了猫脑中存在神经元孔体,并进一步证实了大鼠脑突触体中突触前膜存在孔体。本研究结果进一步证实了大鼠脑中孔体的杯状形态,并证明了它们在猫神经末梢中具有相似的形状和大小。该研究还首次证明了在不同种类的哺乳动物中普遍存在类似的孔体。

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