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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Enrichment of presenilin 1 peptides in neuronal large dense-core and somatodendritic clathrin-coated vesicles.
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Enrichment of presenilin 1 peptides in neuronal large dense-core and somatodendritic clathrin-coated vesicles.

机译:早老素1肽在神经元大的密集核和体树状网格蛋白包被的囊泡中的富集。

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摘要

Presenilin 1 is an integral membrane protein specifically cleaved to yield an N-terminal and a C-terminal fragment, both membrane-associated. More than 40 presenilin 1 mutations have been linked to early-onset familial Alzheimer disease, although the mechanism by which these mutations induce the Alzheimer disease neuropathology is not clear. Presenilin 1 is expressed predominantly in neurons, suggesting that the familial Alzheimer disease mutants may compromise or change the neuronal function (s) of the wild-type protein. To elucidate the function of this protein, we studied its expression in neuronal vesicular systems using as models the chromaffin granules of the neuroendocrine chromaffin cells and the major categories of brain neuronal vesicles, including the small clear-core synaptic vesicles, the large dense-core vesicles, and the somatodendritic and nerve terminal clathrin-coated vesicles. Both the N- and C-terminal presenilin 1 proteolytic fragments were greatly enriched in chromaffin granule and neuronal large dense-core vesicle membranes, indicating that these fragments are targeted to these vesicles and may regulate the large dense-core vesicle-mediated secretion of neuropeptides and neurotransmitters at synaptic sites. The presenilin 1 fragments were also enriched in the somatodendritic clathrin-coated vesicle membranes, suggesting that they are targeted to the somatodendritic membrane, where they may regulate constitutive secretion and endocytosis. In contrast, these fragments were not enriched in the small clear-core synaptic vesicle or in the nerve terminal clathrin-coated vesicle membranes. Taken together, our data indicate that presenilin 1 proteolytic fragments are targeted to specific populations of neuronal vesicles where they may regulate vesicular function. Although full-length presenilin 1 was present in crude homogenates, it was not detected in any of the vesicles studied, indicating that, unlike the presenilin fragments, full-length protein may not have a vesicular function.
机译:早老蛋白1是一种完整的膜蛋白,被特异性切割以产生N端和C端片段,两者都是膜相关的。尽管尚不清楚40多种早老素1突变与家族性早老性阿尔茨海默氏病相关,但这些突变诱导阿尔茨海默氏病神经病理的机制尚不清楚。早老素1主要在神经元中表达,表明家族性阿尔茨海默氏病突变体可能会损害或改变野生型蛋白的神经元功能。为了阐明该蛋白的功能,我们使用神经内分泌嗜铬细胞的嗜铬颗粒和脑神经元囊泡的主要类别(包括小的透明核突触囊泡,大的密集核囊泡)作为模型,研究了其在神经元囊泡系统中的表达。囊泡,以及树突状和神经末梢网格蛋白包被的囊泡。 N和C端的presenilin 1蛋白水解片段都大大富集了嗜铬粒蛋白颗粒和神经元大的密集核小泡膜,表明这些片段靶向这些小泡,并可能调节大密集核小泡介导的神经肽分泌。和突触位点的神经递质。早老素1片段也富集于体树突状网格蛋白包被的囊泡膜中,表明它们靶向于体树突状膜,它们可以调节组成性分泌和内吞作用。相反,这些片段未富集在小的透明核突触小泡或神经末梢网格蛋白包被的小泡膜中。两者合计,我们的数据表明,早老素1蛋白水解片段针对的神经元囊泡的特定人群,他们可能会调节囊泡功能。尽管粗制匀浆中存在全长早老素1,但在所研究的任何囊泡中均未检测到,这表明与早老素片段不同,全长蛋白可能不具有囊泡功能。

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