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首页> 外文期刊>American Journal of Physiology >Metabolic organization in vascular smooth muscle: distribution and localization of caveolin-1 and phosphofructokinase.
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Metabolic organization in vascular smooth muscle: distribution and localization of caveolin-1 and phosphofructokinase.

机译:血管平滑肌中的代谢组织:caveolin-1和磷酸果糖激酶的分布和定位。

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We have shown that a compartmentation of glycolysis and gluconeogenesis exists in vascular smooth muscle (VSM) and that an intact plasma membrane is essential for compartmentation. Previously, we observed that disruption of the caveolae inhibited glycolysis but stimulated gluconeogenesis, suggesting a link between caveolae and glycolysis. We hypothesized that glycolytic enzymes specifically localize to caveolae. We used confocal microscopy to determine the localization of caveolin-1 (CAV-1) and phosphofructokinase (PFK) in freshly isolated VSM cells and cultured A7r5 cells. Freshly isolated cells exhibited a peripheral (membrane) localization of CAV-1 with 85.3% overlap with PFK. However, only 59.9% of PFK was localized with CAV-1, indicating a wider distribution of PFK than CAV-1. A7r5 cells exhibited compartmentation of glycolysis and gluconeogenesis and displayed two apparent phenotypes distinguishable by shape (spindle and ovoid shaped). In both phenotypes, CAV-1 fluorescence overlapped with PFK fluorescence (83.1 and 81.5%, respectively). However, the overlap of PFK with CAV-1 was lower in the ovoid-shaped (35.9%) than the spindle-shaped cells (53.7%). There was also a progressive shift in pattern of colocalization from primarily the membrane in spindle-shaped cells (both freshly isolated and cultured cells) to primarily the cytoplasm in ovoid-shaped cells. Overall, cellular colocalization of PFK with CAV-1 was significant in all cell types (0.68 > or = R2 < or = 0.77). Coimmunoprecipitation of PFK with CAV-1 further validated the possible interaction between the proteins. We conclude that a similar distribution of one pool of PFK with CAV-1 contributes to the compartmentation of glycolysis from gluconeogenesis.
机译:我们已经显示,糖酵解和糖异生的分隔存在于血管平滑肌(VSM)中,完整的质膜对于分隔是必不可少的。以前,我们观察到小窝的破坏会抑制糖酵解,但会刺激糖异生,提示小窝和糖酵解之间存在联系。我们假设糖酵解酶专门定位于小窝。我们使用共聚焦显微镜确定了在新鲜分离的VSM细胞和培养的A7r5细胞中小窝蛋白1(CAV-1)和磷酸果糖激酶(PFK)的定位。新鲜分离的细胞表现出CAV-1的外围(膜)定位,与PFK重叠85.3%。但是,只有59.9%的PFK被CAV-1定位,这表明PFK的分布比CAV-1宽。 A7r5细胞表现出糖酵解和糖异生的分隔,并显示出两个可以通过形状区分的明显表型(纺锤形和卵形)。在这两个表型中,CAV-1荧光与PFK荧光重叠(分别为83.1和81.5%)。然而,PFK与CAV-1的重叠在卵形(35.9%)中比纺锤形细胞(53.7%)低。共定位的模式也逐渐从主轴形细胞(新鲜分离和培养的细胞)中的膜转移到卵形细胞中的胞质中。总体而言,PFK与CAV-1的细胞共定位在所有细胞类型中均显着(0.68>或= R2 <或= 0.77)。 PFK与CAV-1的共免疫沉淀进一步验证了蛋白质之间可能的相互作用。我们得出结论,与CAV-1相似的PFK池分布有助于糖异生的糖酵解分区。

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