Auerbach Michael, Liedtke Carole M
Department of Pediatrics, Rainbow Babies & children Hospital, Case Western Reserve University, BRB, Rm. 824, 2109 Adelbert Rd., Cleveland, OH 44106-4948, USA.
Am J Physiol Cell Physiol. 2007 Jul;293(1):C294-304. doi: 10.1152/ajpcell.00413.2006. Epub 2007 Apr 4.
Previous studies from this laboratory demonstrated a role for protein kinase C (PKC)epsilon in the regulation of cAMP-dependent cystic fibrosis transmembrane regulator (CFTR) Cl channel function via binding of PKCepsilon to RACK1, a receptor for activated C kinase, and of RACK1 to human Na(+)/H(+) exchanger regulatory factor (NHERF1). In the present study, we investigated the role of RACK1 in regulating CFTR function in a Calu-3 airway epithelial cell line. Confocal microscopy and biotinylation of apical surface proteins demonstrate apical localization of RACK1 independent of actin. Mass spectrometric analysis of NHERF1 revealed copurification of tubulin, which, in in vitro binding assays, selectively binds to NHERF1, but not RACK1, via a PDZ1 domain. In binding and pulldown assays, we show direct binding of a PDZ2 domain to NHERF1, pulldown of endogenous NHERF1 by a PDZ2 domain, and inhibition of NHERF1-tubulin binding by a PDZ1 domain. Downregulation of RACK1 using double-stranded silencing RNA reduced the amount of RACK1 by 77.5% and apical expression of biotinylated CFTR by 87.4%. Expression of CFTR, NHERF1, and actin were not altered by treatment with siRACK1 or by nontargeting control silencing RNA, which, in addition, did not affect RACK1 expression. On the basis of these results, we model a RACK1 proteome consisting of PKCepsilon-RACK1-NHERF1-NHERF1-tubulin with a role in stable expression of CFTR in the apical plasma membrane of epithelial cells.
该实验室之前的研究表明,蛋白激酶C(PKC)ε通过PKCε与活化C激酶的受体RACK1以及RACK1与人钠/氢交换调节因子(NHERF1)结合,在调节环磷酸腺苷(cAMP)依赖性囊性纤维化跨膜传导调节因子(CFTR)氯离子通道功能中发挥作用。在本研究中,我们调查了RACK1在Calu-3气道上皮细胞系中调节CFTR功能的作用。共聚焦显微镜检查和顶端表面蛋白的生物素化显示RACK1定位于顶端,且不依赖于肌动蛋白。对NHERF1的质谱分析揭示了微管蛋白的共纯化,在体外结合试验中,微管蛋白通过PDZ1结构域选择性地与NHERF1结合,但不与RACK1结合。在结合和下拉试验中,我们展示了PDZ2结构域与NHERF1的直接结合、PDZ2结构域对内源NHERF1的下拉作用以及PDZ1结构域对NHERF1-微管蛋白结合的抑制作用。使用双链沉默RNA下调RACK1可使RACK1的量减少77.5%,生物素化CFTR的顶端表达减少87.4%。用siRACK1处理或用非靶向对照沉默RNA处理均未改变CFTR、NHERF1和肌动蛋白的表达,此外,非靶向对照沉默RNA也不影响RACK1的表达。基于这些结果,我们构建了一个由PKCε-RACK1-NHERF1-NHERF1-微管蛋白组成的RACK1蛋白质组模型,其在上皮细胞顶端质膜中CFTR的稳定表达中发挥作用。