Raikar Leena S, Vallejo Johana, Lloyd Pamela G, Hardin Christopher D
Department of Medical Pharmacology and Physiology, University of Missouri, Columbia, Missouri 65212, USA.
J Cell Biochem. 2006 Jul 1;98(4):861-71. doi: 10.1002/jcb.20732.
Although membrane-associated glycolysis has been observed in a variety of cell types, the mechanism of localization of glycolytic enzymes to the plasma membrane is not known. We hypothesized that caveolin-1 (CAV-1) serves as a scaffolding protein for glycolytic enzymes and may play a role in the organization of cell metabolism. To test this hypothesis, we over-expressed CAV-1 in cultured A7r5 (rat aorta vascular smooth muscle; VSM) cells. Confocal immunofluorescence microscopy was used to study the distribution of phosphofructokinase (PFK) and CAV-1 in the transfected cells. Areas of interest (AOI) were analyzed in a central Z-plane across the cell transversing the perinuclear region. To quantify any shift in PFK localization resulting from CAV-1 over-expression, we calculated a periphery to center (PC) index by taking the average of the two outer AOIs from each membrane region and dividing by the central one or two AOIs. We found the PC index to be 1.92 +/- 0.57 (mean +/- SEM, N = 8) for transfected cells and 0.59 +/- 0.05 (mean +/- SEM, N = 11) for control cells. Colocalization analysis demonstrated that the percentage of PFK associated with CAV-1 increased in transfected cells compared to control cells. The localization of aldolase (ALD) was also shifted towards the plasma membrane (and colocalized with PFK) in CAV-1 over-expressing cells. These results demonstrate that CAV-1 creates binding sites for PFK and ALD that may be of higher affinity than those binding sites localized in the cytoplasm. We conclude that CAV-1 functions as a scaffolding protein for PFK, ALD and perhaps other glycolytic enzymes, either through direct interaction or accessory proteins, thus contributing to compartmented metabolism in vascular smooth muscle.
尽管在多种细胞类型中均观察到了膜相关糖酵解现象,但糖酵解酶定位于质膜的机制尚不清楚。我们推测小窝蛋白-1(CAV-1)作为糖酵解酶的支架蛋白,可能在细胞代谢组织中发挥作用。为验证这一假设,我们在培养的A7r5(大鼠主动脉血管平滑肌;VSM)细胞中过表达CAV-1。采用共聚焦免疫荧光显微镜研究转染细胞中磷酸果糖激酶(PFK)和CAV-1的分布。在穿过细胞核周围区域的细胞中央Z平面分析感兴趣区域(AOI)。为量化因CAV-1过表达导致的PFK定位变化,我们计算了外周与中心(PC)指数,即取每个膜区域两个外周AOI的平均值,再除以中央的一个或两个AOI。我们发现转染细胞的PC指数为1.92±0.57(平均值±标准误,N = 8),对照细胞为0.59±0.05(平均值±标准误,N = 11)。共定位分析表明,与对照细胞相比,转染细胞中与CAV-1相关的PFK百分比增加。在过表达CAV-1的细胞中,醛缩酶(ALD)的定位也向质膜转移(并与PFK共定位)。这些结果表明,CAV-1为PFK和ALD创造了结合位点,其亲和力可能高于细胞质中的结合位点。我们得出结论,CAV-1作为PFK、ALD以及可能其他糖酵解酶的支架蛋白发挥作用,要么通过直接相互作用,要么通过辅助蛋白,从而有助于血管平滑肌中的区室化代谢。