Wang Bin, Bisello Alessandro, Yang Yanmei, Romero Guillermo G, Friedman Peter A
Department of Pharmacology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.
J Biol Chem. 2007 Dec 14;282(50):36214-22. doi: 10.1074/jbc.M707263200. Epub 2007 Sep 19.
Na/H exchange regulatory factor-1 (NHERF1) is a PDZ protein that regulates trafficking of several G protein-coupled receptors. The phenotype of NHERF1-null mice suggests that the parathyroid hormone (PTH) receptor (PTH1R) is the principal GPCR interacting with NHERF1. The effect of NHERF1 on receptor recycling is unknown. Here, we characterized NHERF1 effects on PTH1R membrane tethering and recycling by radio-ligand binding and recovery after maximal receptor endocytosis. Using Chinese hamster ovary cells expressing the PTH1R, where NHERF1 expression could be induced by tetracycline, NHERF1 inhibited PTH1R endocytosis and delayed PTH1R recycling. NHERF1 also inhibited PTH-induced receptor internalization in MC4 osteoblast cells. Reducing constitutive NHERF1 levels in HEK-293 cells with short hairpin RNA directed against NHERF1 augmented PTH1R endocytosis in response to PTH. Mutagenesis of the PDZ-binding domains or deletion of the MERM domain of NHERF1 demonstrated that both are required for inhibition of endocytosis and recycling. Likewise, an intact COOH-terminal PDZ recognition motif in PTH1R is needed. The effect of NHERF1 on receptor internalization and recycling was not associated with altered receptor expression or binding, activation, or phosphorylation but involved beta-arrestin and dynamin. We conclude that NHERF1 inhibits endocytosis without affecting PTH1R recycling in MC4 and PTH1R-expressing HEK-293 cells. Such an effect may protect against PTH resistance or PTH1R down-regulation in certain cells harboring NHERF1.
钠/氢交换调节因子-1(NHERF1)是一种PDZ蛋白,可调节多种G蛋白偶联受体的转运。NHERF1基因敲除小鼠的表型表明,甲状旁腺激素(PTH)受体(PTH1R)是与NHERF1相互作用的主要GPCR。NHERF1对受体再循环的影响尚不清楚。在这里,我们通过放射性配体结合以及最大受体胞吞作用后的恢复情况,来表征NHERF1对PTH1R膜锚定和再循环的影响。利用表达PTH1R的中国仓鼠卵巢细胞,其中NHERF1的表达可由四环素诱导,NHERF1抑制PTH1R的胞吞作用并延迟PTH1R的再循环。NHERF1还抑制MC4成骨细胞中PTH诱导的受体内化。用针对NHERF1的短发夹RNA降低HEK-293细胞中组成型NHERF1水平,可增强PTH1R对PTH的胞吞作用。NHERF1的PDZ结合结构域诱变或MERM结构域缺失表明,两者都是抑制胞吞作用和再循环所必需的。同样,PTH1R中完整的COOH末端PDZ识别基序也是必需的。NHERF1对受体内化和再循环的影响与受体表达、结合、激活或磷酸化的改变无关,但涉及β-抑制蛋白和发动蛋白。我们得出结论,在MC4和表达PTH1R的HEK-293细胞中,NHERF1抑制胞吞作用而不影响PTH1R的再循环。这种作用可能防止某些含有NHERF1的细胞中出现PTH抵抗或PTH1R下调。