首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >Acute pain alters P-glycoprotein-containing protein complexes in rat cerebral microvessels: Implications for P-glycoprotein trafficking
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Acute pain alters P-glycoprotein-containing protein complexes in rat cerebral microvessels: Implications for P-glycoprotein trafficking

机译:急性疼痛改变了大鼠脑微血管中含P糖蛋白的蛋白复合物:P糖蛋白运输的意义。

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摘要

P-glycoprotein (PgP) is the major drug efflux pump in human cerebral microvessels. PgP prevents pathogens, toxins and therapeutic drugs from entering the CNS. Understanding the molecular regulation of PgP activity will suggest novel mechanisms to improve CNS drug delivery. Previously, we found that during peripheral inflammatory pain (PIP) (3 h after λ carrageenan injection in the rat paw), PgP traffics to the cortical microvessel endothelial cell plasma membrane concomitant with increased PgP activity. In the current study, we measured the changes in composition of PgP-containing protein complexes after PIP in rat microvessel isolates. We found that a portion of the PgP is contained in a multi-protein complex that also contains the caveolar proteins CAV1, SDPR, PTRF and PRKCDBP. With PIP, total CAV1 bound to PgP was unchanged; however, phosphorylated CAV1 (Y14P-CAV1) in the complex increased. There were few PgP/CAV1 complexes relative to total PgP and CAV1 in the microvessels suggesting CAV1 bound to PgP is unlikely to affect total PgP activity. However, both PgP and CAV1 trafficked away from the nucleus in response to PIP. These data suggest that P-CAV1 bound to PgP potentially regulates PgP trafficking and contributes to the acute PgP activity increase after a PIP stimulus.
机译:P-糖蛋白(PgP)是人脑微血管中的主要药物外排泵。 PgP可防止病原体,毒素和治疗药物进入中枢神经系统。了解PgP活性的分子调控将建议改善CNS药物传递的新机制。以前,我们发现在外周炎性疼痛(PIP)期间(在大鼠爪中注射角叉菜胶后3小时),PgP伴随着增加的PgP活性流向皮质微血管内皮细胞质膜。在本研究中,我们测量了大鼠微血管分离物中PIP后含PgP的蛋白质复合物的组成变化。我们发现,PgP的一部分包含在多蛋白复合物中,该复合物还包含海绵体蛋白CAV1,SDPR,PTRF和PRKCDBP。使用PIP时,与PgP绑定的总CAV1保持不变;但是,复合物中的磷酸化CAV1(Y14P-CAV1)增加了。相对于微血管中的总PgP和CAV1,几乎没有PgP / CAV1复合物,这表明与PgP结合的CAV1不太可能影响总PgP活性。但是,PgP和CAV1都响应PIP从核中转移出去。这些数据表明,与PgP结合的P-CAV1可能调节PgP的运输,并在PIP刺激后导致急性PgP活性增加。

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