Local anesthetics as effectors of allosteric gating - Lidocaine effects on inactivation-deficient rat skeletal muscle Na channels

被引:77
作者
Balser, JR [1 ]
Nuss, HB [1 ]
Orias, DW [1 ]
Johns, DC [1 ]
Marban, E [1 ]
Tomaselli, GF [1 ]
Lawrence, JH [1 ]
机构
[1] JOHNS HOPKINS UNIV,SCH MED,DEPT MED,BALTIMORE,MD 21287
关键词
lidocaine; modulated receptor; single-channel recording; site-directed mutagenesis; Na channels;
D O I
10.1172/JCI119116
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Time- and voltage-dependent local anesthetic effects on sodium (Na) currents are generally interpreted using modulated receptor models that require formation of drug-associated nonconducting states with high affinity for the inactivated channel, The al availability of inactivation-deficient Na channels has enabled us to test this traditional view of the drug-channel interaction. Rat skeletal muscle Na channels were mutated in the III-IV tinker to disable fast inactivation (F1304Q: FQ), Lidocaine accelerated the decay of whole-cell FQ currents in Xenopus oocytes, reestablishing the wild-type phenotype; peak inward current at -20 mV was blocked with an IC50 of 513 mu M, wile plateau current was blocked with an IC50 of only 74 mu M (P <0.005 vs. peak). In single-channel experiments, mean open time was unaltered and unitary current was only reduced at higher drug concentrations, suggesting that open-channel block does not explain the effect of lidocaine on FQ plateau current. We considered a simple model in which Lidocaine reduced the free energy for inactivation, causing altered coupling between activation and inactivation. This model readily simulated macroscopic Na current kinetics over a range of lidocaine concentrations, Traditional modulated receptor models which did not modify coupling between gating processes could not reproduce the effects of lidocaine with rate constants constrained by single-channel data. Our results support a reinterpretation of local anesthetic action whereby lidocaine functions as an allosteric effector to enhance Na channel inactivation.
引用
收藏
页码:2874 / 2886
页数:13
相关论文
共 74 条
[51]   EFFECTS OF LIDOCAINE ON SINGLE CARDIAC SODIUM-CHANNELS [J].
NILIUS, B ;
BENNDORF, K ;
MARKWARDT, F .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1987, 19 (09) :865-874
[52]   Coupling between fast and slow inactivation revealed by analysis of a point mutation (F1304Q) in mu 1 rat skeletal muscle sodium channels [J].
Nuss, HB ;
Balser, JR ;
Orias, DW ;
Lawrence, JH ;
Tomaselli, GF ;
Marban, E .
JOURNAL OF PHYSIOLOGY-LONDON, 1996, 494 (02) :411-429
[53]   Functional association of the beta(1) subunit with human cardiac (hH1) and rat skeletal muscle (mu 1) sodium channel alpha subunits expressed in Xenopus oocytes [J].
Nuss, HB ;
Chiamvimonvat, N ;
PerezGarcia, MT ;
Tomaselli, GF ;
Marban, E .
JOURNAL OF GENERAL PHYSIOLOGY, 1995, 106 (06) :1171-1191
[54]   Cardiac sodium channels (hH1) are intrinsically more sensitive to block by lidocaine than are skeletal muscle (mu 1) channels [J].
Nuss, HB ;
Tomaselli, GF ;
Marban, E .
JOURNAL OF GENERAL PHYSIOLOGY, 1995, 106 (06) :1193-1209
[55]   EVIDENCE FOR A DIRECT INTERACTION BETWEEN INTERNAL TETRA-ALKYLAMMONIUM CATIONS AND THE INACTIVATION GATE OF CARDIAC SODIUM-CHANNELS [J].
OLEARY, ME ;
KALLEN, RG ;
HORN, R .
JOURNAL OF GENERAL PHYSIOLOGY, 1994, 104 (03) :523-539
[56]   MOLECULAR KINETICS OF VOLTAGE-DEPENDENT NA+ CHANNELS [J].
PATLAK, J .
PHYSIOLOGICAL REVIEWS, 1991, 71 (04) :1047-1080
[57]   AMINO-ACID-RESIDUES REQUIRED FOR FAST NA+-CHANNEL INACTIVATION - CHARGE NEUTRALIZATIONS AND DELETIONS IN THE III-IV-LINKER [J].
PATTON, DE ;
WEST, JW ;
CATTERALL, WA ;
GOLDIN, AL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (22) :10905-10909
[58]   AUTOMATIC SELECTION OF METHODS FOR SOLVING STIFF AND NONSTIFF SYSTEMS OF ORDINARY DIFFERENTIAL-EQUATIONS [J].
PETZOLD, L .
SIAM JOURNAL ON SCIENTIFIC AND STATISTICAL COMPUTING, 1983, 4 (01) :136-148
[59]   MOLECULAR DETERMINANTS OF STATE-DEPENDENT BLOCK OF NA+ CHANNELS BY LOCAL-ANESTHETICS [J].
RAGSDALE, DS ;
MCPHEE, JC ;
SCHEUER, T ;
CATTERALL, WA .
SCIENCE, 1994, 265 (5179) :1724-1728
[60]  
Rogers J. C., 1996, Biophysical Journal, V70, pA319