Tandem function of nucleotide binding domains confers competence to sulfonylurea receptor in gating ATP-sensitive K+ channels

被引:68
作者
Zingman, LV
Hodgson, DM
Bienengraeber, M
Karger, AB
Kathmann, EC
Alekseev, AE
Terzic, A
机构
[1] Mayo Clin & Mayo Fdn, Dept Med, Div Cardiovasc Dis, Rochester, MN 55905 USA
[2] Mayo Clin & Mayo Fdn, Dept Mol Pharmacol, Div Cardiovasc Dis, Rochester, MN 55905 USA
[3] Mayo Clin & Mayo Fdn, Dept Expt Therapeut, Div Cardiovasc Dis, Rochester, MN 55905 USA
[4] Russian Acad Sci, Inst Theoret & Expt Biophys, Pushchino 142290, Russia
关键词
D O I
10.1074/jbc.M109452200
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
Fundamental to the metabolic sensor function of ATP-sensitive K+ (K-ATP) channels is the sulfonylurea receptor. This ATP-binding cassette protein, which contains nucleotide binding domains (NBD1 and NBD2) with conserved Walker motifs, regulates the ATP sensitivity of the pore-forming Kir6.2 subunit. Although NBD2 hydrolyzes ATP, a property essential in K-ATP channel gating, the role of NBD1, which has limited catalytic activity, if at all, remains less understood. Here, we provide functional evidence that cooperative interaction, rather than the independent contribution of each NBD, is critical for K-ATP channel regulation. Gating of cardiac K-ATP channels by distinct conformations in the NBD2 ATPase cycle, induced by gamma-phosphate analogs, was disrupted by point mutation not only of the Walker motif in NBD2 but also in NBD1. Cooling membrane patches to decelerate the intrinsic ATPase activity counteracted ATP-induced K-ATP channel inhibition, an effect that mimicked stabilization of the MgADP-bound posthydrolytic state at NBD2 by the gamma-phosphate analog orthovanadate. Temperature-induced channel activation was abolished by mutations that either prevent stabilization of MgADP at NBD2 or ATP at NBD1. These findings provide a paradigm of K-ATP channel gating based on integration of both NBDs into a functional unit within the multimeric channel complex.
引用
收藏
页码:14206 / 14210
页数:5
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