Dual phosphorylations underlie modulation of unitary KCNQ K+ channels by Src tyrosine kinase

被引:39
作者
Li, Y
Langlais, P
Gamper, N
Liu, F
Shapiro, MS
机构
[1] Univ Texas, Hlth Sci Ctr, Dept Physiol, San Antonio, TX 78229 USA
[2] Univ Texas, Hlth Sci Ctr, Dept Pharmacol, San Antonio, TX 78229 USA
关键词
D O I
10.1074/jbc.M408410200
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
Src tyrosine kinase suppresses KCNQ (M-type) K+ channels in a subunit-specific manner representing a mode of modulation distinct from that involving G protein-coupled receptors. We probed the molecular and biophysical mechanisms of this modulation using mutagenesis, biochemistry, and both whole-cell and single channel modes of patch clamp recording. Immunoprecipitation assays showed that Src associates with KCNQ2-5 subunits but phosphorylates only KCNQ3-5. Using KCNQ3 as a background, we found that mutation of a tyrosine in the amino terminus (Tyr-67) or one in the carboxyl terminus (Tyr-349) abolished Src-dependent modulation of heterologously expressed KCNQ2/3 heteromultimers. The tyrosine phosphorylation was much weaker for either the KCNQ3-Y67F or KCNQ3-Y349F mutants and wholly absent in the KCNQ3-Y67F/Y349F double mutant. Biotinylation assays showed that Src activity does not alter the membrane abundance of channels in the plasma membrane. In recordings from cell-attached patches containing a single KCNQ2/3 channel, we found that Src inhibits the open probability of the channels. Kinetic analysis was consistent with the channels having two discrete open times and three closed times. Src activity reduced the durations of the longest open time and lengthened the longest closed time of the channels. The implications for the mechanisms of channel regulation by the dual phosphorylations on both channel termini are discussed.
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页码:45399 / 45407
页数:9
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共 43 条
[1]   K(v)LQT1 and IsK (minK) proteins associate to form the I-Ks cardiac potassium current [J].
Barhanin, J ;
Lesage, F ;
Guillemare, E ;
Fink, M ;
Lazdunski, M ;
Romey, G .
NATURE, 1996, 384 (6604) :78-80
[2]   Potentiation of neuronal L calcium channels by IGF-1 requires phosphorylation of the α1 subunit on a specific tyrosine residue [J].
Bence-Hanulec, KK ;
Marshall, J ;
Blair, LAC .
NEURON, 2000, 27 (01) :121-131
[3]   IGF-1 modulates N and L calcium channels in a PI 3-kinase-dependent manner [J].
Blair, LAC ;
Marshall, J .
NEURON, 1997, 19 (02) :421-429
[4]   M-CURRENTS IN VOLTAGE-CLAMPED MAMMALIAN SYMPATHETIC NEURONS [J].
CONSTANTI, A ;
BROWN, DA .
NEUROSCIENCE LETTERS, 1981, 24 (03) :289-294
[5]   Two adaptor proteins differentially modulate the phosphorylation and biophysics of Kv1.3 ion channel by Src kinase. [J].
Cook, KK ;
Fadool, DA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (15) :13268-13280
[6]   TYR527 IS PHOSPHORYLATED IN PP60C-SRC - IMPLICATIONS FOR REGULATION [J].
COOPER, JA ;
GOULD, KL ;
CARTWRIGHT, CA ;
HUNTER, T .
SCIENCE, 1986, 231 (4744) :1431-1434
[7]   Novel form of crosstalk between G protein and tyrosine kinase pathways [J].
DiversePierluissi, M ;
Remmers, AE ;
Neubig, RR ;
Dunlap, K .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (10) :5417-5421
[8]   Tyrosine phosphorylation modulates current amplitude and kinetics of a neuronal voltage-gated potassium channel [J].
Fadool, DA ;
Holmes, TC ;
Berman, K ;
Dagan, D ;
Levitan, IB .
JOURNAL OF NEUROPHYSIOLOGY, 1997, 78 (03) :1563-1573
[9]   Activation of protein tyrosine kinase PYK2 by the m1 muscarinic acetylcholine receptor [J].
Felsch, JS ;
Cachero, TG ;
Peralta, EG .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (09) :5051-5056
[10]   Calmodulin mediates Ca2+-dependent modulation of M-type K+ channels [J].
Gamper, N ;
Shapiro, MS .
JOURNAL OF GENERAL PHYSIOLOGY, 2003, 122 (01) :17-31