Nitric oxide modulates cardiac Na+ channel via protein kinase A and protein kinase G

被引:43
作者
Ahmmed, GU
Xu, YF
Dong, PH
Zhang, Z
Eiserich, J
Chiamvimonvat, N
机构
[1] Univ Calif Davis, Dept Internal Med, Div Cardiovasc Med, TB 172, Davis, CA 95616 USA
[2] Univ Calif Davis, Dept Internal Med, Div Nephrol, Davis, CA 95616 USA
关键词
nitric oxide; cardiac Na+ current; protein kinase A; protein kinase G;
D O I
10.1161/hh2301.100801
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We directly tested the effects of nitric oxide (NO) on Na+ channels in guinea pig and mouse ventricular myocytes using patch-clamp recordings. We have previously shown that NO donors have no observed effects on expressed Na+ channels. In contrast, NO (half-blocking concentration of 523 nmol/L) significantly reduces peak whole-cell Na+ current (I-Na) in isolated ventricular myocytes. The inhibitory effect of NO on I-Na was not associated with changes in activation, inactivation, or reactivation kinetics. At the single-channel level, the reduction in macroscopic current was mediated by a decrease in open probability and/or a decrease in the number of functional channels with no change in single-channel conductance. Application of cell permeable analogs of cGMP or CAMP mimics the inhibitory effects of NO. Furthermore, the effects of NO on I-Na can only be blocked by inhibition of both cGMP and CAMP pathways. Sulfhydryl-reducing, agent does not reverse the effect of NO. In summary, although NO exerts its action via the known guanylyl cyclase (GC)/cGMP pathway, our findings provide evidence that NO can mediate its function via a GC/cGMP-independent mechanism involving the activation of adynylyl cyclase (AC) and cAMP-dependent protein kinase.
引用
收藏
页码:1005 / 1013
页数:9
相关论文
共 38 条
  • [1] Changes in Ca2+ cycling proteins underlie cardiac action potential prolongation in a pressure-overloaded guinea pig model with cardiac hypertrophy and failure
    Ahmmed, GU
    Dong, PH
    Song, GJ
    Ball, NA
    Xu, YF
    Walsh, RA
    Chiamvimonvat, N
    [J]. CIRCULATION RESEARCH, 2000, 86 (05) : 558 - 570
  • [2] Balke CW, 1999, SCIENCE, V284, p711a, DOI [DOI 10.1126/SCIENCE.284.5415.711A, 10.1126/science.284.5415.711a]
  • [3] CONTROL OF CARDIAC-MUSCLE CELL-FUNCTION BY AN ENDOGENOUS NITRIC-OXIDE SIGNALING SYSTEM
    BALLIGAND, JL
    KELLY, RA
    MARSDEN, PA
    SMITH, TW
    MICHEL, T
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (01) : 347 - 351
  • [4] Nitroglycerin-mediated vasorelaxation is modulated by endothelial calcium-activated potassium channels
    Bang, L
    Boesgaard, S
    Nielsen-Kudsk, JE
    Vejlstrup, NG
    Aldershvile, J
    [J]. CARDIOVASCULAR RESEARCH, 1999, 43 (03) : 772 - 778
  • [5] Brady AJB, 1993, AM J PHYSIOL, P176
  • [6] Redox modulation of L-type calcium channels in ferret ventricular myocytes - Dual mechanism regulation by nitric oxide and S-nitrosothiols
    Campbell, DL
    Stamler, JS
    Strauss, HC
    [J]. JOURNAL OF GENERAL PHYSIOLOGY, 1996, 108 (04) : 277 - 293
  • [7] FUNCTIONAL CONSEQUENCES OF SULFHYDRYL MODIFICATION IN THE PORE-FORMING SUBUNITS OF CARDIOVASCULAR CA2+ AND NA+ CHANNELS
    CHIAMVIMONVAT, N
    OROURKE, B
    KAMP, TJ
    KALLEN, RG
    HOFMANN, F
    FLOCKERZI, V
    MARBAN, E
    [J]. CIRCULATION RESEARCH, 1995, 76 (03) : 325 - 334
  • [8] Control of ion flux and selectivity by negatively charged residues in the outer mouth of rat sodium channels
    Chiamvimonvat, N
    PerezGarcia, MT
    Tomaselli, GF
    Marban, E
    [J]. JOURNAL OF PHYSIOLOGY-LONDON, 1996, 491 (01): : 51 - 59
  • [9] DOWNS RW, 1980, J BIOL CHEM, V255, P949
  • [10] Modulation of the human cardiac sodium channel alpha-subunit by cAMP-dependent protein kinase and the responsible sequence domain
    Frohnwieser, B
    Chen, LQ
    Schreibmayer, W
    Kallen, RG
    [J]. JOURNAL OF PHYSIOLOGY-LONDON, 1997, 498 (02): : 309 - 318