PHARMACOLOGICAL APPROACH TO THE STRUCTURE OF SODIUM-CHANNELS IN MYELINATED AXONS

被引:78
作者
RITCHIE, JM
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D O I
10.1146/annurev.ne.02.030179.002013
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Figure 6 summarizes the present state of our knowledge on the sodium channel in myelinated nerve fibers. Two sites have been discussed in detail: a metal cation binding site accessible by tetrodotoxin and saxitoxin from the outside surface only; and a second site accessible from the inside surface with which local anesthetics combine. Hydrogen ions gain access to this region of the sodium channel (and hence determine the relative local concentration of protonated drug) more readily from the extracellular fluid than from the axoplasm (Schwarz et al 1977). In addition, a variety of other sites have been mentioned, binding of drugs to which alters selectively the kinetics of opening and closing of the h and m gates. In myelinated nerve fibers these channels are packed tightly on the nodal membrane. The highest estimate for the sodium channel density in the mammalian node is 10,000 micron2. A re-evaluation of the effective nodal area, however, might reduce this value to 3000-5000/micron 2. This would still leave the nodal membrane rather crowded with sodium channels. Furthermore, the channel density would still be greater than the density of particles, sometimes believed to be sodium channels seen in freeze fracture studies (Rosenbluth 1976). One possibility for resolving this problem is that the units detected by X-ray inactivation (Levinson & Ellory 1973), and those seen in freeze-fracture studies (Rosenbluth 1976) represent not single sodium channels but groups of three. Catterall & Morrow (1978) in a comparison of the binding of saxitoxin and Leiurus sculpturatus scorpion toxin venom have concluded that there are three saxitoxin binding sites for each scorpion toxin binding site. On this basis, three saxitoxin molecules might act to block independently each of the three openings of the channels; while the the conformational change produced by the scorpion venom molecule would affect the inactivation process of all three channels.
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页码:341 / 362
页数:22
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共 83 条
[1]  
ABBOTT BC, 1968, P R SOC LOND B BIOL, V148, P149
[2]   EFFECTS OF NEUROTOXINS (VERATRIDINE, SEA-ANEMONE TOXIN, TETRODOTOXIN) ON TRANSMITTER ACCUMULATION AND RELEASE BY NERVE-TERMINALS INVITRO [J].
ABITA, JP ;
CHICHEPORTICHE, R ;
SCHWEITZ, H ;
LAZDUNSKI, M .
BIOCHEMISTRY, 1977, 16 (09) :1838-1844
[3]  
ALBUQUERQUE EX, 1972, FED PROC, V31, P1133
[4]  
ALMERS W, 1977, BIOPHYS J, V17, pA205
[5]   TETRODOTOXIN BINDING TO NORMAL AND DEPOLARIZED FROG MUSCLE AND CONDUCTANCE OF A SINGLE SODIUM CHANNEL [J].
ALMERS, W ;
LEVINSON, SR .
JOURNAL OF PHYSIOLOGY-LONDON, 1975, 247 (02) :483-509
[6]   DESTRUCTION OF SODIUM CONDUCTANCE INACTIVATION IN SQUID AXONS PERFUSED WITH PRONASE [J].
ARMSTRONG, CM ;
BEZANILLA, F ;
ROJAS, E .
JOURNAL OF GENERAL PHYSIOLOGY, 1973, 62 (04) :375-391
[7]   PARTIAL CHARACTERIZATION OF A TETRODOTOXIN-BINDING COMPONENT FROM NERVE MEMBRANE [J].
BENZER, TI ;
RAFTERY, MA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1972, 69 (12) :3634-3637
[8]  
BERTHOLD CH, 1968, ACTA SOC MED UPS, VS 73, P37
[9]   MODIFICATION OF SODIUM CHANNEL GATING IN FROG MYELINATED NERVE-FIBERS BY CENTRUROIDES-SCULPTURATUS SCORPION-VENOM [J].
CAHALAN, MD .
JOURNAL OF PHYSIOLOGY-LONDON, 1975, 244 (02) :511-534
[10]  
CAMPBELL DT, 1978, BIOPHYS J, V21, pA42