ROMK1 channel activity is regulated by monobuquitination

被引:40
作者
Lin, DH
Sterling, H
Wang, ZJ
Babilonia, E
Yang, BF
Dong, K
Hebert, SC
Giebisch, G
Wang, WH [1 ]
机构
[1] New York Med Coll, Dept Pharmacol, Valhalla, NY 10595 USA
[2] Harbin Med Univ, Dept Pharmacol, Harbin 150086, Peoples R China
[3] Yale Univ, Sch Med, Dept Cellular & Mol Physiol, New Haven, CT 06520 USA
关键词
ubiquitination; inwardly rectifying K channel (Kir.11); K recycling; collecting duct; thick ascending limb;
D O I
10.1073/pnas.0409767102
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The ubiquitination of proteins can signa I their degradation, modify their activity or target them to specific membranes or cellular organelles. Here, we show that monoubiquitination regulates the plasma membrane abundance and function of the potassium channel, ROMK. Immunoprecipitation of proteins obtained from renal cortex and outer medulla with ROMK antibody revealed that this channel was monoubiquitinated. To determine the ubiquitin binding site on ROMK1, all intracellular lysine (Lys) residues of ROMK1 were individually mutated to arginine (Arg), and a two-electrode voltage clamp was used to measure the ROMK1 channel activity in Xenopus oocytes, ROMK1 channel activity increased from 8.1 to 27.2 mu A only when Lys-22 was mutated to Arg. Furthermore, Western blotting failed to detect the ubiquitinated ROMK1 in oocytes injected with R1K22R. Patch-clamp experiments showed that biophysical properties of R1K22R were identical to those of wild-type ROMK1. Although total protein expression levels of GFP-ROMK1 and GFP-R1K22R in oocytes were similar, confocal microscopy showed that the surface fluorescence intensity in oocytes injected with SFP-R1K22R was higher than that of GFP-ROMK1. In addition, biotin labeling of ROMK1 and R1K22R proteins expressed in HEK293 cells showed increased surface expression of the Lys-22 mutant channel. Finally, expression of R1K22R in COS7 cells significantly stimulated the surface expression of ROMK1, We conclude that ROMK1 can be monoubiquitinated and that Lys-22 is an ubiquitin-binding site. Thus, monoubiquitination of ROMK1 regulates channel activity by reducing the surface expression of channel protein. This finding implicates the linking of a single ubiquitin molecule to. channels as an important posttranslational regulatory signal.
引用
收藏
页码:4306 / 4311
页数:6
相关论文
共 40 条
[1]   VASOPRESSIN INCREASES DENSITY OF APICAL LOW-CONDUCTANCE K+ CHANNELS IN RAT CCD [J].
CASSOLA, AC ;
GIEBISCH, G ;
WANG, WH .
AMERICAN JOURNAL OF PHYSIOLOGY, 1993, 264 (03) :F502-F509
[2]   UBIQUITIN DEPENDENCE OF SELECTIVE PROTEIN-DEGRADATION DEMONSTRATED IN THE MAMMALIAN-CELL CYCLE MUTANT TS85 [J].
CIECHANOVER, A ;
FINLEY, D ;
VARSHAVSKY, A .
CELL, 1984, 37 (01) :57-66
[3]   When ubiquitin meets ubiquitin receptors: a signalling connection [J].
Di Fiore, PP ;
Polo, S ;
Hofmann, K .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2003, 4 (06) :491-497
[4]  
Ecelbarger CA, 2001, J AM SOC NEPHROL, V12, P10, DOI 10.1681/ASN.V12110
[5]   Identification of a titratable lysine residue that determines sensitivity of kidney potassium channels (ROMK) to intracellular pH [J].
Fakler, B ;
Schultz, JH ;
Yang, J ;
Schulte, U ;
Brandle, U ;
Zenner, HP ;
Jan, LY ;
Ruppersberg, JP .
EMBO JOURNAL, 1996, 15 (16) :4093-4099
[6]   Ubiquitin Lys63 is involved in ubiquitination of a yeast plasma membrane protein [J].
Galan, JM ;
HaguenauerTsapis, R .
EMBO JOURNAL, 1997, 16 (19) :5847-5854
[7]   Renal potassium transport: mechanisms and regulation [J].
Giebisch, G .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 1998, 274 (05) :F817-F833
[8]   Multiple monoubiquitination of RTKs is sufficient for their endocytosis and degradation [J].
Haglund, K ;
Sigismund, S ;
Polo, S ;
Szymkiewicz, I ;
Di Fiore, PP ;
Dikic, I .
NATURE CELL BIOLOGY, 2003, 5 (05) :461-466
[9]   Regulation of membrane protein transport by ubiquitin and ubiquitin-binding proteins [J].
Hicke, L ;
Dunn, R .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 2003, 19 :141-172
[10]   WNK4 regulates the balance between renal NaCl reabsorption and K+ secretion [J].
Kahle, KT ;
Wilson, FH ;
Leng, Q ;
Lalioti, MD ;
O'Connell, AD ;
Dong, K ;
Rapson, AK ;
MacGregor, GG ;
Giebisch, G ;
Hebert, SC ;
Lifton, RP .
NATURE GENETICS, 2003, 35 (04) :372-376