Characterization of phosphorylation-defective mutants of human P-glycoprotein expressed in mammalian cells

被引:152
作者
Germann, UA
Chambers, TC
Ambudkar, SV
Licht, T
Cardarelli, CO
Pastan, I
Gottesman, MM
机构
[1] NCI,CELL BIOL LAB,BETHESDA,MD 20892
[2] VERTEX PHARMACEUT INC,CAMBRIDGE,MA 02139
[3] UNIV ARKANSAS MED SCI HOSP,DEPT BIOCHEM & MOLEC BIOL,LITTLE ROCK,AR 72205
[4] JOHNS HOPKINS UNIV,SCH MED,DEPT MED,DIV NEPHROL,BALTIMORE,MD 21205
[5] JOHNS HOPKINS UNIV,SCH MED,DEPT PHYSIOL,BALTIMORE,MD 21205
[6] NCI,MOLEC BIOL LAB,BETHESDA,MD 20892
关键词
D O I
10.1074/jbc.271.3.1708
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To assess the role of phosphorylation of the human multidrug resistance MDR1 gene product P-glycoprotein for its drug transport activity, phosphorylation sites within its linker region were subjected to mutational analysis. We constructed a 5A mutant, in which serines at positions 661, 667, 671, 675, and 683 were replaced by nonphosphorylatable alanine residues, and a 5D mutant carrying aspartic acid residues at the respective positions to mimic permanently phosphorylated serine residues. Transfection studies revealed that both mutants were targeted properly to the cell surface and conferred multidrug resistance by diminishing drug accumulation. In contrast to wild-type P-glycoprotein, the overexpressed 5A and the 5D mutants exhibited no detectable levels of phosphorylation, either in vivo following metabolic labeling of cells with [P-32] orthophosphate or in vitro in phosphorylation assays with protein kinase C, cAMP-dependent protein kinase, or a P-glycoprotein-specific protein kinase purified from multidrug-resistant KB-V1 cells. These results reconfirm that the major P-glycoprotein phosphorylation sites are located within the linker region. Furthermore, the first direct evidence is provided that phosphorylation/dephosphorylation mechanisms do not play an essential role in the establishment of the multidrug resistance phenotype mediated by human P-glycoprotein.
引用
收藏
页码:1708 / 1716
页数:9
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