首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Intersectin Regulates Dendritic Spine Development and Somatodendritic Endocytosis but Not Synaptic Vesicle Recycling in Hippocampal Neurons
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Intersectin Regulates Dendritic Spine Development and Somatodendritic Endocytosis but Not Synaptic Vesicle Recycling in Hippocampal Neurons

机译:Intersectin调节树突棘发育和躯体树突。 内吞作用而不是海马突触小泡回收 神经元

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摘要

Intersectin-short (intersectin-s) is a multimodule scaffolding protein functioning in constitutive and regulated forms of endocytosis in non-neuronal cells and in synaptic vesicle (SV) recycling at the neuromuscular junction of Drosophila and Caenorhabditis elegans. In vertebrates, alternative splicing generates a second isoform, intersectin-long (intersectin-l), that contains additional modular domains providing a guanine nucleotide exchange factor activity for Cdc42. In mammals, intersectin-s is expressed in multiple tissues and cells, including glia, but excluded from neurons, whereas intersectin-l is a neuron-specific isoform. Thus, intersectin-I may regulate multiple forms of endocytosis in mammalian neurons, including SV endocytosis. We now report, however, that intersectin-l is localized to somatodendritic regions of cultured hippocampal neurons, with some juxtanuclear accumulation, but is excluded from synaptophysin-labeled axon terminals. Consistently, intersectin-l knockdown (KD) does not affect SV recycling. Instead intersectin-l co-localizes with clathrin heavy chain and adaptor protein 2 in the somatodendritic region of neurons, and its KD reduces the rate of transferrin endocytosis. The protein also co-localizes with F-actin at dendritic spines, and intersectin-l KD disrupts spine maturation during development. Our data indicate that intersectin-l is indeed an important regulator of constitutive endocytosis and neuronal development but that it is not a prominent player in the regulated endocytosis of SVs.
机译:Intersectin-short(intersectin-s)是一种多模块支架蛋白,在非神经元细胞中以及在果蝇和秀丽隐杆线虫的神经肌肉接头处的突触小泡(SV)循环中,以组成型和调节型内吞作用起作用。在脊椎动物中,选择性剪接产生第二种同工型,即secsectin-long(intersectin-1),其包含为Cdc42提供鸟嘌呤核苷酸交换因子活性的其他模块结构域。在哺乳动物中,intersectin-s在包括神经胶质在内的多种组织和细胞中表达,但不包括在神经元中,而secsectin-1是神经元特异性同种型。因此,secretin-1可以调节哺乳动物神经元中多种形式的内吞作用,包括SV内吞作用。然而,我们现在报告,intersectin-1位于培养的海马神经元的体树突状区域,具有一些近核积累,但被突触素标记的轴突末端排除在外。一致地,secsecin-1敲低(KD)不会影响SV回收。相反,intersectin-1与网格蛋白重链和衔接蛋白2共同定位在神经元的树突状区域中,其KD降低了转铁蛋白内吞的速率。该蛋白质还与 F-肌动蛋白在树突棘和intersectin-1 KD破坏脊柱成熟 在开发过程中。我们的数据表明intersectin-1确实是 本构内吞作用和神经元发育的重要调节器,但 它不是SVs内吞调控的主要参与者。

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