Chloroquine blocks the Kir4.1 channels by an open-pore blocking mechanism

被引:16
作者
Marmolejo-Murillo, Leticia G. [1 ]
Arechiga-Figueroa, Ivan A. [2 ]
Moreno-Galindo, Eloy G. [1 ]
Navarro-Polanco, Ricardo A. [1 ]
Rodriguez-Menchaca, Aldo A. [3 ]
Cui, Meng [4 ]
Sanchez-Chapula, Jose A. [1 ]
Ferrer, Tania [1 ]
机构
[1] Unidad Invest Carlos Mendez Ctr U Invest Biomed U, Mexico City, DF, Mexico
[2] Conacyt Univ Autonoma San Luis Potosi, Fac Med, Ave V Carranza 2405, San Luis Potosi 78290, Mexico
[3] Univ Autonoma San Luis Potosi, Fac Med, Dept Fisiol & Biofis, San Luis Potosi, Mexico
[4] Virginia Commonwealth Univ, Sch Med, Dept Physiol & Biophys, Richmond, VA 23298 USA
基金
美国国家卫生研究院;
关键词
Kir4.1; channels; Chloroquine; Cationic amphiphilic drugs; INWARD RECTIFIER KIR2.1; SHORT QT SYNDROME; POTASSIUM CHANNEL; MOLECULAR-BASIS; K+ CHANNELS; IN-SILICO; INHIBITION; RECTIFICATION; ANTIDEPRESSANT; KCNJ10;
D O I
10.1016/j.ejphar.2017.02.024
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Kir4.1 channels have been implicated in various physiological processes, mainly in the K+ homeostasis of the central nervous system and in the control of glial function and neuronal excitability. Even though, pharmacological research of these channels is very limited. Chloroquine (CQ) is an amino quinolone derivative known to inhibit Kir2.1 and Kir6.2 channels with different action mechanism and binding site. Here, we employed patch-clamp methods, mutagenesis analysis, and molecular modeling to characterize the molecular pharmacology of Kir4.1 inhibition by CQ. We found that this drug inhibits Kir4.1 channels heterologously expressed in HEK-293 cells. CQ produced a fast-onset voltage-dependent pore-blocking effect on these channels. In inside-out patches, CQ showed notable higher potency (IC50 approximate to 0.5 mu M at +50 mV) and faster onset of block when compared to whole-cell configuration (IC50 approximate to 7 mu M at +60 mV). Also, CQ showed a voltage dependent unblock with repolarization. These results suggest that the drug directly blocks Kir4.1 channels by a pore-plugging mechanism. Moreover, we found that two residues (Thr128 and Glu158), facing the central cavity and located within the transmembrane pore, are particularly important structural determinants of CQ block. This evidence was similar to what was previously reported with Kir6.2, but distinct from the interaction site (cytoplasmic pore) CQ-Kir2.1. Thus, our findings highlight the diversity of interaction sites and mechanisms that underlie amino quinolone inhibition of Kir channels.
引用
收藏
页码:40 / 47
页数:8
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