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Localization of Brain Endothelial Luminal and Abluminal Transporters with Immunogold Electron Microscopy

机译:免疫金电子显微镜对脑内皮发光和空转运蛋白的定位。

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摘要

>Summary: Immunogold electron microscopy has identified a variety of blood-brain barrier (BBB) proteins with transporter and regulatory functions. For example, isoforms of the glucose transporter, protein kinase C (PKC), and caveolin-1 are BBB specific. Isoform 1 of the facilitative glucose transporter family (GLUT1) is expressed solely in endothelial (and pericyte) domains, and ∼75% of the protein is membrane-localized in humans. Evidence is presented for a water cotransport function of BBB GLUT1. A shift in transporter polarity characterized by increased luminal membrane GLUT1 is seen when BBB glucose transport is upregulated; but a greater abluminal membrane density is seen in the human BBB when GLUT1 is downregulated. PKC colocalizes with GLUT1 within these endothelial domains during up- and downregulation, suggesting that a PKC-mediated mechanism regulates human BBB glucose transporter expression. Occludin and claudin-5 (like other tight-junctional proteins) exhibit a restricted distribution, and are expressed solely within interendothelial clefts of the BBB. GFAP (glial fibrillary acidic protein) is uniformly expressed throughout the foot-processes and the entire astrocyte. But the microvascular-facing membranes of the glial processes that contact the basal laminae are also polarized, and their transporters may also redistribute within the astrocyte. Monocarboxylic acid transporter and water channel (Aquaporin-4) expression are enriched at the glial foot-process, and both undergo physiological modulation. We suggest that as transcytosis and efflux mechanisms generate interest as potential neurotherapeutic targets, electron microscopic confirmation of their site-specific expression patterns will continue to support the CNS drug discovery process.
机译:>摘要:免疫金电子显微镜已鉴定出多种具有转运蛋白和调节功能的血脑屏障(BBB)蛋白。例如,葡萄糖转运蛋白,蛋白激酶C(PKC)和小窝蛋白1的同工型是BBB特异性的。促进葡萄糖转运蛋白家族(GLUT1)的同工型1仅在内皮(和周细胞)结构域表达,约75%的蛋白质在人体中位于膜上。提出了BBB GLUT1的水共转运功能的证据。当BBB葡萄糖转运上调时,可见转运蛋白极性的改变,其特征是腔膜GLUT1增加。但是当下调GLUT1时,人BBB的空泡膜密度更高。在上调和下调过程中,PKC与GLUT1共定位,提示PKC介导的机制调节人BBB葡萄糖转运蛋白的表达。 Occludin和claudin-5(与其他紧密连接蛋白一样)显示出受限的分布,并且仅在BBB的内皮间裂中表达。 GFAP(神经胶质纤维酸性蛋白)在整个足部过程和整个星形胶质细胞中均表达。但是,与基底层接触的神经胶质细胞的面向微血管的膜也被极化,其转运蛋白也可能在星形胶质细胞内重新分布。单羧酸转运蛋白和水通道(Aquaporin-4)的表达在胶质足突过程中富集,并且都经过生理调节。我们建议随着胞吞作用和外排机制作为潜在的神经治疗靶标引起人们的关注,其位点特异性表达模式的电子显微镜确认将继续支持CNS药物发现过程。

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