Heme regulates allosteric activation of the Slo1 BK channel

被引:83
作者
Horrigan, FT
Heinemann, SH
Hoshi, T [1 ]
机构
[1] Univ Penn, Sch Med, Dept Physiol, Philadelphia, PA 19104 USA
[2] Univ Jena, Fac Med, D-07747 Jena, Germany
关键词
D O I
10.1085/jgp.200509262
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Large conductance calcium-dependent (Slo1 BK) channels are allosterically activated by membrane depolarization and divalent cations, and possess a rich modulatory repertoire. Recently, intracellular heme has been identified as a potent regulator of Slo1 BK channels ( Tang, X. D., R. Xu, M. F. Reynolds, M. L. Garcia, S. H. Heinemann, and T. Hoshi. 2003. Nature. 425: 531 - 535). Here we investigated the mechanism of the regulatory action of heme on heterologously expressed Slo1 BK channels by separating the influences of voltage and divalent cations. In the absence of divalent cations, heme generally decreased ionic currents by shifting the channel's G - V curve toward more depolarized voltages and by rendering the curve less steep. In contrast, gating currents remained largely unaffected by heme. Simulations suggest that a decrease in the strength of allosteric coupling between the voltage sensor and the activation gate and a concomitant stabilization of the open state account for the essential features of the heme action in the absence of divalent ions. At saturating levels of divalent cations, heme remained similarly effective with its influence on the G - V simulated by weakening the coupling of both Ca2+ binding and voltage sensor activation to channel opening. The results thus show that heme dampens the influence of allosteric activators on the activation gate of the Slo1 BK channel. To account for these effects, we consider the possibility that heme binding alters the structure of the RCK gating ring and thereby disrupts both Ca2+- and voltage-dependent gating as well as intrinsic stability of the open state.
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页码:7 / 21
页数:15
相关论文
共 39 条
[1]   Molecular profile of vascular ion channels after experimental subarachnoid hemorrhage [J].
Aihara, Y ;
Jahromi, BS ;
Yassari, R ;
Nikitina, E ;
Agbaje-Williams, M ;
Macdonald, RL .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2004, 24 (01) :75-83
[2]   A REINTERPRETATION OF MAMMALIAN SODIUM-CHANNEL GATING BASED ON SINGLE CHANNEL RECORDING [J].
ALDRICH, RW ;
COREY, DP ;
STEVENS, CF .
NATURE, 1983, 306 (5942) :436-441
[3]  
Armstrong Clay M, 2003, Sci STKE, V2003, pre10, DOI 10.1126/stke.2003.188.re10
[4]   Mechanisms of maurotoxin action on shaker potassium channels [J].
Avdonin, V ;
Nolan, B ;
Sabatier, JM ;
De Waard, M ;
Hoshi, T .
BIOPHYSICAL JOURNAL, 2000, 79 (02) :776-787
[5]   Stimulatory action of internal protons on Slo1 BK channels [J].
Avdonin, V ;
Tang, XD ;
Hoshi, T .
BIOPHYSICAL JOURNAL, 2003, 84 (05) :2969-2980
[6]   Allosteric gating of a large conductance Ca-activated K+ channel [J].
Cox, DH ;
Cui, J ;
Aldrich, RW .
JOURNAL OF GENERAL PHYSIOLOGY, 1997, 110 (03) :257-281
[7]   Intrinsic voltage dependence and Ca2+ regulation of mslo large conductance Ca-activated K+ channels [J].
Cui, J ;
Cox, DH ;
Aldrich, RW .
JOURNAL OF GENERAL PHYSIOLOGY, 1997, 109 (05) :647-673
[8]   Allosteric linkage between voltage and Ca2+-dependent activation of BK-tgype mslo1 K+ channels [J].
Cui, JM ;
Aldrich, RW .
BIOCHEMISTRY, 2000, 39 (50) :15612-15619
[9]   Evidence for and consequences of chronic heme deficiency in Belgrade rat reticulocytes [J].
Garrick, MD ;
Scott, D ;
Kulju, D ;
Romano, MA ;
Dolan, KG ;
Garrick, LM .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 1999, 1449 (02) :125-136
[10]   Allosteric voltage gating of potassium channels I -: mSlo ionic currents in the absence of Ca2+ [J].
Horrigan, FT ;
Cui, JM ;
Aldrich, RW .
JOURNAL OF GENERAL PHYSIOLOGY, 1999, 114 (02) :277-304