PH-DEPENDENT BINDING OF LOCAL-ANESTHETICS IN SINGLE BATRACHOTOXIN-ACTIVATED NA+ CHANNELS - COCAINE VS QUATERNARY COMPOUNDS

被引:31
作者
NETTLETON, J
WANG, GK
机构
[1] BRIGHAM & WOMENS HOSP, ANESTHESIA RES LABS, 75 FRANCIS ST, BOSTON, MA 02115 USA
[2] HARVARD UNIV, SCH MED, BOSTON, MA 02115 USA
关键词
D O I
10.1016/S0006-3495(90)82356-0
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The effects of internal and external pH on the binding kinetics of local anesthetics (LAs) were studied in single batrachotoxin-activated Na+ channels incorporated into planar bilayers. With internal quaternary QX-314 and RAC421-II drugs, the binding interactions were little affected by either external or internal pH. With tertiary cocaine, the binding kinetics were drastically altered by pH. A decrease in the internal pH from 9.3 to 6.2 decreased the apparent equilibrium dissociation constant (Kd) of internal cocaine by more than 100-fold. This increase in the binding affinity was mostly accounted for by an increase in the apparent cocaine on-rate constant (kon) of approximately 80-fold. The cocaine off-rate constant (koff) was little changed (between 3–4 s-1). These results demonstrate quantitatively that the charged form of cocaine is the active form for BTX-activated Na+ channels. Surprisingly, the apparent pKa of cocaine near its binding site was estimated to be 1.4 units lower than that in bulk solution (7.1 vs. 8.5), indicating that the LA drug encounters a relatively hydrophobic environment. Opposite to the internal pH effect, a decrease of external pH from 8.4 to 6.2 increased the Kd value of internally and externally applied cocaine by approximately 8- and approximately 25-fold, respectively. External pH effect was primarily mediated by modulation of kon; koff was again relatively unaffected. Our findings support a model in which neutral cocaine can readily cross the membrane barrier, but needs to be protonated internally to bind to its binding site. © 1990, The Biophysical Society. All rights reserved.
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页码:95 / 106
页数:12
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