Phosphorylation of the A-kinase-anchoring protein Yotiao contributes to protein kinase A regulation of a heart potassium channel

被引:69
作者
Chen, L
Kurokawa, J
Kass, RS
机构
[1] Columbia Univ, Coll Phys & Surg, Dept Pharmacol, New York, NY 10032 USA
[2] Tokyo Med & Dent Univ, Dept Bioinformat Pharmacol, Tokyo 1010062, Japan
关键词
D O I
10.1074/jbc.M505191200
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
Regulation of the heart by the sympathetic nervous system, fundamental to the physiological response to stress and exercise, requires coordinated phosphorylation of multiple downstream molecular targets, including the I-Ks (slowly activating potassium current) channel. Sympathetic nervous system stimulation increases intracellular cAMP for which targeted regulation is directed in large part by distinct scaffold or anchoring proteins. Yotiao is an A-kinase-anchoring protein (AKAP) that recruits the cyclic AMP-dependent protein kinase (protein kinase A (PKA)) and protein phosphatase 1 to the carboxyl terminus of the I-Ks channel to form a molecular complex and control its phosphorylation state, crucial to the cardiac cellular response to sympathetic nervous system stimulation. Here we report that Yotiao itself is a substrate for PKA phosphorylation, and we identify a Yotiao amino-terminal (N-T) residue (Ser-43) that is PKA-phosphorylated in response to beta-adrenergic receptor stimulation. The replacement of Ser-43 by Ala ablates the PKA phosphorylation of N-T Yotiao and markedly diminishes the functional response of the wild type and pseudo-phosphorylated I-Ks channel to cAMP but neither prevents the PKA phosphorylation of KCNQ1 nor its binding to Yotiao. These results suggest, for the first time, a critical role for the PKA phosphorylation of an AKAP in the functional regulation of an ion channel protein and postphosphorylation allosteric modulation of the I-Ks channel by Yotiao.
引用
收藏
页码:31347 / 31352
页数:6
相关论文
共 27 条
[1]   Novel arrhythmogenic mechanism revealed by a Long-QT syndrome mutation in the cardiac Na+ channel [J].
Abriel, H ;
Cabo, C ;
Wehrens, XHT ;
Rivolta, I ;
Motoike, HK ;
Memmi, M ;
Napolitano, C ;
Priori, SG ;
Kass, RS .
CIRCULATION RESEARCH, 2001, 88 (07) :740-745
[2]   Molecular characterization of an anchor protein (AKAPCE) that binds the RI subunit (RCE) of type I protein kinase A from Caenorhabditis elegans [J].
Angelo, R ;
Rubin, CS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (23) :14633-14643
[3]   Orchestration of synaptic plasticity through AKAP signaling complexes [J].
Bauman, AL ;
Goehring, AS ;
Scott, JD .
NEUROPHARMACOLOGY, 2004, 46 (03) :299-310
[4]   AKAP-Lbc nucleates a protein kinase D activation scaffold [J].
Carnegie, GK ;
Smith, FD ;
McConnachie, G ;
Langeberg, LK ;
Scott, JD .
MOLECULAR CELL, 2004, 15 (06) :889-899
[5]   AKAPs: from structure to function [J].
Colledge, M ;
Scott, JD .
TRENDS IN CELL BIOLOGY, 1999, 9 (06) :216-221
[6]   Identification of a 15-kDa cAMP-dependent protein kinase-anchoring protein associated with skeletal muscle L-type calcium channels [J].
Gray, PC ;
Tibbs, VC ;
Catterall, WA ;
Murphy, BJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (10) :6297-6302
[7]   Analysis of A-kinase anchoring protein (AKAP) interaction with protein kinase A (PKA) regulatory subunits: PKA isoform specificity in AKAP binding [J].
Herberg, FW ;
Maleszka, A ;
Eide, T ;
Vossebein, L ;
Tasken, K .
JOURNAL OF MOLECULAR BIOLOGY, 2000, 298 (02) :329-339
[8]   AKAP150 signaling complex promotes suppression of the M-current by muscarinic agonists [J].
Hoshi, N ;
Zhang, JS ;
Omaki, M ;
Takeuchi, T ;
Yokoyama, S ;
Wanaverbecq, N ;
Langeberg, LK ;
Yoneda, Y ;
Scott, JD ;
Brown, DA ;
Higashida, H .
NATURE NEUROSCIENCE, 2003, 6 (06) :564-571
[9]   β-adrenergic regulation requires direct anchoring of PKA to cardiac CaV1.2 channels via a leucine zipper interaction with A kinase-anchoring protein 15 [J].
Hulme, JT ;
Lin, TWC ;
Westenbroek, RE ;
Scheuer, T ;
Catterall, WA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (22) :13093-13098
[10]   Proteomic, functional, and domain-based analysis of in vivo 14-3-3 binding proteins involved in cytoskeletal regulation and cellular organization [J].
Jin, J ;
Smith, FD ;
Stark, C ;
Wells, CD ;
Fawcett, JP ;
Kulkarni, S ;
Metalnikov, P ;
O'Donnell, P ;
Taylor, P ;
Taylor, L ;
Zougman, A ;
Woodgett, JR ;
Langeberg, LK ;
Scott, JD ;
Pawson, T .
CURRENT BIOLOGY, 2004, 14 (16) :1436-1450