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首页> 外文期刊>Molecular Neurobiology >Slow Release of HIV-1 Protein Nef from Vesicle-like Structures Is Inhibited by Cytosolic Calcium Elevation in Single Human Microglia
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Slow Release of HIV-1 Protein Nef from Vesicle-like Structures Is Inhibited by Cytosolic Calcium Elevation in Single Human Microglia

机译:通过单身人微胶质细胞溶血性钙升高抑制来自囊泡样结构的HIV-1蛋白质NEF的缓慢释放

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Once infected by HIV-1, microglia abundantly produce accessory protein Nef that enhances virus production and infectivity, but little is known about its intracellular compartmentalization, trafficking mode(s), and release from microglia. Here, we transfected immortalized human microglia with a plasmid encoding Nef tagged with green fluorescent protein (Nef.GFP) to biochemically and microscopically identify Nef.GFP-associated cellular compartments and examine their mobility and Nef release from cultured cells. Immunoblotting revealed that Nef.GFP confined to subcellular fractions with a buoyant density similar to organelles positive for lysosomal-associated membrane protein 1 (LAMP1) but structurally segregated from dextran-laden and LysoTracker-laden endo-/lysosomes in live cells. As revealed by confocal microscopy, Nef.GFP-positive vesicle-like structures were smaller than dextran-laden vesicles and displayed slow and non-directional mobility, in contrast to the faster and directional mobility of dextran-laden vesicles. Ionomycin-evoked elevation in intracellular free Ca2+ concentration ([Ca2+](i)) negligibly affected mobility of Nef.GFP structures but strongly and irrecoverably attenuated mobility of dextran-laden vesicles. A slow time-dependent decrease in the number of Nef.GFP-positive structures was observed in non-stimulated controls (5 +/- 1 structures/min), but not in ionomycin-stimulated cells (0 +/- 2 structures/min; P<0.05), indicating that elevated [Ca2+](i) inhibits the release of Nef.GFP structures. The latter significantly co-localized with membrane sites immunopositive for the tetraspanins CD9 (36 +/- 4%) and CD81 (22 +/- 1%). This is the first report to demonstrate that microglial CD9- and CD81-positive plasma membrane-derived compartments are associated with biogenesis and Nef release.
机译:曾经受到HIV-1的感染,微胶质细胞大量生产辅助蛋白NEF,可提高病毒的产生和感染性,但对其细胞内隔室化,贩运模式以及从小胶质细胞释放几乎没有着名。在这里,我们将永生化的人小植物转染了用贴上绿色荧光蛋白(NeF.GFP)的质粒,以生物化学和微观鉴定Nef.gfp相关的细胞室,并从培养的细胞中检查它们的迁移率和NEF释放。免疫印迹显示NeF.GFP局限于具有浮力密度的亚细胞级分,其具有与溶酶体相关膜蛋白1(灯1)阳性的细胞器(灯1),但在活细胞中从Dextran-Laden和LysoTracker-Laden内/溶酶体中结构上分离。如共聚焦显微镜透露,NEF.GFP阳性囊泡状结构小于葡萄葡萄囊囊泡,与葡聚糖囊泡的速度和定向迁移率相比,较慢且非定向的迁移率。在细胞内游离Ca 2 +浓度([Ca2 +](i))中疏忽影响Nef.gfp结构的迁移率,但葡萄干囊泡的强烈和不可恢复的迁移率的离子霉素诱发的升高。在非刺激的对照(5 +/- 1结构/ min)中观察到NEF.GFP阳性结构数量的缓慢时间减少,但不含离子霉素刺激的细胞(0 +/- 2结构/分钟; P <0.05),表明升高的[CA2 +](I)抑制NEF.GFP结构的释放。后者用膜位点与四苯胺CD9(36 +/- 4%)和CD81(22 +/- 1%)的膜位点混合。这是第一份证明小胶囊CD9-和CD81阳性血浆膜衍生隔室与生物发生和NEF释放有关。

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