Zhang Yan, Schuetz John D, Elmquist William F, Miller Donald W
Pfizer Global Research and Development, PDM Department, Ann Arbor, MI, USA.
J Pharmacol Exp Ther. 2004 Nov;311(2):449-55. doi: 10.1124/jpet.104.068528. Epub 2004 Jun 24.
Several multidrug resistance-associated protein (MRP) homologs are expressed in brain microvessel endothelial cells forming the blood-brain barrier (BBB). The influence of these MRP transporters on BBB permeability will be dependent on their localization within the brain microvessel endothelial cells. Using two different and complementary approaches, the localization of various MPR homologs (MRP1, MRP4, and MRP5) was examined in primary cultured bovine brain microvessel endothelial cells (BBMECs). The first approach involved centrifugal separation of apical and basolateral plasma membranes of cultured BBMECs. The membrane fractions were then subjected to Western blot analysis for MRPs. The second approach used confocal laser scanning microscopy to determine membrane localization of MRPs in BBMECs. Results show a predominantly apical plasma membrane distribution for MRP1 and MRP5, and an almost equal distribution of MRP4 on the apical and basolateral plasma membrane of BBMECs. These studies provide the first demonstration of the localization of MRP1, MRP4, and MRP5 homologs in brain microvessel endothelial cells. The present studies also indicate that the localization of MRPs in the endothelial cells forming the BBB is different from that observed in polarized epithelial cells and thus may contribute to the reduced entry and enhanced elimination of organic anions and nucleotides in the brain.
几种多药耐药相关蛋白(MRP)同源物在构成血脑屏障(BBB)的脑微血管内皮细胞中表达。这些MRP转运蛋白对血脑屏障通透性的影响将取决于它们在脑微血管内皮细胞内的定位。采用两种不同且互补的方法,在原代培养的牛脑微血管内皮细胞(BBMECs)中检测了各种MPR同源物(MRP1、MRP4和MRP5)的定位。第一种方法涉及对培养的BBMECs的顶端和基底外侧质膜进行离心分离。然后对膜组分进行MRPs的蛋白质印迹分析。第二种方法使用共聚焦激光扫描显微镜来确定BBMECs中MRPs的膜定位。结果显示,MRP1和MRP5主要分布在顶端质膜,而MRP4在BBMECs的顶端和基底外侧质膜上分布几乎相等。这些研究首次证明了MRP1、MRP4和MRP5同源物在脑微血管内皮细胞中的定位。本研究还表明,MRPs在构成血脑屏障的内皮细胞中的定位与在极化上皮细胞中观察到的不同,因此可能有助于减少脑中有机阴离子和核苷酸的进入并增强其清除。