Contribution of Nav1.8 sodium channels to action potential electrogenesis in DRG neurons

被引:432
作者
Renganathan, M
Cummins, TR
Waxman, SG
机构
[1] Yale Univ, Sch Med, Dept Neurol, New Haven, CT 06510 USA
[2] Yale Univ, Sch Med, Paralyzed Vet Amer, Eastern Paralyzed Vet Assoc Neurosci Res Ctr, New Haven, CT 06510 USA
[3] Vet Affairs Connecticut Healthcare Ctr, Rehabil Res Ctr, West Haven, CT 06516 USA
关键词
D O I
10.1152/jn.2001.86.2.629
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
C-type dorsal root ganglion (DRG) neurons can generate tetrodotoxin-resistant (TTX-R) sodium-dependent action potentials. However, multiple sodium channels are expressed in these neurons, and the molecular identity of the TTX-R sodium channels that contribute to action potential production in these neurons has not been established. In this study, we used current-clamp recordings to compare action potential electrogenesis in Na(v)1.8 (+/+) and (-/-) small DRG neurons maintained for 2-8 h in vitro to examine the role of sodium channel Na(v)1.8 (alpha -NS) in action potential electrogenesis. Although there was no significant difference in resting membrane potential, input resistance, current threshold, or voltage threshold in Na(v)1.8 (+/+) and (-/-) DRG neurons, there were significant differences in action potential electrogenesis. Most Na(v)1.8 (+/+) neurons generate all-or-none action potentials, whereas most of Na(v)1.8 (-/-) neurons produce smaller graded responses. The peak of the response was significantly reduced in Na(v)1.8 (-/-) neurons [31.5 +/- 2.2 (SE) mV] compared with Na(v)1.8 (+/+) neurons (55.0 +/- 4.3 mV). The maximum rise slope was 84.7 +/- 11.2 mV/ms in Na(v)1.8 (+/+) neurons, significantly faster than in Na(v)1.8 (-/-) neurons where it was 47.2 +/- 1.3 mV/ms. Calculations based on the action potential overshoot in Na(v)1.8 (+/+) and (-/-) neurons, following blockade of Ca2+ currents, indicate that Na(v)1.8 contributes a substantial fraction (80-90%) of the inward membrane current that flows during the rising phase of the action potential. We found that fast TTX-sensitive Na+ channels can produce all-or-none action potentials in some Na(v)1.8 (-/-) neurons but, presumably as a result of steady-state inactivation of these channels, electrogenesis in Na(v)1.8 (-/-) neurons is more sensitive to membrane depolarization than in Na(v)1.8 (+/+) neurons, and, in the absence of Na(v)1.8, is attenuated with even modest depolarization. These observations indicate that Na(v)1.8 contributes substantially to action potential electrogenesis in C-type DRG neurons.
引用
收藏
页码:629 / 640
页数:12
相关论文
共 40 条
  • [1] The tetrodotoxin-resistant sodium channel SNS has a specialized function in pain pathways
    Akopian, AN
    Souslova, V
    England, S
    Okuse, K
    Ogata, N
    Ure, J
    Smith, A
    Kerr, BJ
    McMahon, SB
    Boyce, S
    Hill, R
    Stanfa, LC
    Dickenson, AH
    Wood, JN
    [J]. NATURE NEUROSCIENCE, 1999, 2 (06) : 541 - 548
  • [2] A tetrodotoxin-resistant voltage-gated sodium channel expressed by sensory neurons
    Akopian, AN
    Sivilotti, L
    Wood, JN
    [J]. NATURE, 1996, 379 (6562) : 257 - 262
  • [3] Voltage-gated calcium currents in axotomized adult rat cutaneous afferent neurons
    Baccei, ML
    Kocsis, JD
    [J]. JOURNAL OF NEUROPHYSIOLOGY, 2000, 83 (04) : 2227 - 2238
  • [4] Abnormal expression of SNS/PN3 sodium channel in cerebellar Purkinje cells following loss of myelin in the taiep rat
    Black, JA
    Fjell, J
    Dib-Hajj, S
    Duncan, ID
    O'Connor, LT
    Fried, K
    Gladwell, Z
    Tate, S
    Waxman, SG
    [J]. NEUROREPORT, 1999, 10 (05) : 913 - 918
  • [5] Spinal sensory neurons express multiple sodium channel alpha-subunit mRNAs
    Black, JA
    DibHajj, S
    McNabola, K
    Jeste, S
    Rizzo, MA
    Kocsis, JD
    Waxman, SG
    [J]. MOLECULAR BRAIN RESEARCH, 1996, 43 (1-2): : 117 - 131
  • [6] Sensory neuron-specific sodium channel SNS is abnormally expressed in the brains of mice with experimental allergic encephalomyelitis and humans with multiple sclerosis
    Black, JA
    Dib-Hajj, S
    Baker, D
    Newcombe, J
    Cuzner, ML
    Waxman, SG
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (21) : 11598 - 11602
  • [7] 3 TYPES OF SODIUM-CHANNELS IN ADULT-RAT DORSAL-ROOT GANGLION NEURONS
    CAFFREY, JM
    ENG, DL
    BLACK, JA
    WAXMAN, SG
    KOCSIS, JD
    [J]. BRAIN RESEARCH, 1992, 592 (1-2) : 283 - 297
  • [8] Cummins TR, 1998, J NEUROSCI, V18, P9607
  • [9] Cummins TR, 1997, J NEUROSCI, V17, P3503
  • [10] A novel persistent tetrodotoxin-resistant sodium current in SNS-null and wild-type small primary sensory neurons
    Cummins, TR
    Dib-Hajj, SD
    Black, JA
    Akopian, AN
    Wood, JN
    Waxman, SG
    [J]. JOURNAL OF NEUROSCIENCE, 1999, 19 (24)