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May 1, 1999The Journal of General Physiology314 citationsOpen Access

Four Kinetically Distinct Depolarization-activated K+ Currents in Adult Mouse Ventricular Myocytes

HXHaodong XuWGWeinong GuoJNJeanne M. Nerbonne

Key Result

Adult mouse ventricular myocytes express four distinct K+ currents, with Ito,f density significantly lower in septum cells compared to apex cells (6.8 vs 34.6 pA/pF, P<0.001).

Structured PICO

P
Population
Adult mouse ventricular myocytes (n=72 cells dispersed from ventricles, including n=35 from left ventricular apex and n=28 from ventricular septum)
I
Intervention
Electrophysiological recordings and pharmacological blockade (4-aminopyridine, tetraethylammonium, Heteropoda toxin-3)
O
Outcome
Time- and voltage-dependent properties, regional expression, and pharmacological sensitivities of Ca2+-independent, depolarization-activated K+ currentssurrogate

Demonstrates the presence of four kinetically and pharmacologically distinct depolarization-activated K+ currents in adult mouse ventricular myocytes with distinct regional expression patterns.

Abstract

In the experiments here, the time- and voltage-dependent properties of the Ca2+-independent, depolarization-activated K+ currents in adult mouse ventricular myocytes were characterized in detail. In the majority (65 of 72, approximately 90%) of cells dispersed from the ventricles, analysis of the decay phases of the outward currents revealed three distinct K+ current components: a rapidly inactivating, transient outward K+ current, Ito,f (mean +/- SEM taudecay = 85 +/- 2 ms); a slowly (mean +/- SEM taudecay = 1,162 +/- 29 ms) inactivating K+ current, IK,slow; and a non inactivating, steady state current, Iss. In a small subset (7 of 72, approximately 10%) of cells, Ito,f was absent and a slowly inactivating (mean +/- SEM taudecay = 196 +/- 7 ms) transient outward current, referred to as Ito,s, was identified; the densities and properties of IK,slow and Iss in Ito,s-expressing cells are indistinguishable from the corresponding currents in cells with Ito,f. Microdissection techniques were used to remove tissue pieces from the left ventricular apex and from the ventricular septum to allow the hypothesis that there are regional differences in Ito,f and Ito,s expression to be tested directly. Electrophysiological recordings revealed that all cells isolated from the apex express Ito,f (n = 35); Ito,s is not detected in these cells (n = 35). In the septum, by contrast, all of the cells express Ito,s (n = 28) and in the majority (22 of 28, 80%) of cells, Ito,f is also present. The density of Ito,f (mean +/- SEM at +40 mV = 6.8 +/- 0.5 pA/pF, n = 22) in septum cells, however, is significantly (P /=25 mM) TEA. Although both Ito,f and Ito,s are blocked by high (>100 microM) 4-AP concentrations and are relatively insensitive to TEA, Ito,f is selectively blocked by nanomolar concentrations of Heteropoda toxin-3, and Ito,s (as well as IK,slow and Iss) is unaffected. Iss is partially blocked by high concentrations of 4-AP or TEA. The functional implications of the distinct properties and expression patterns of Ito,f and Ito,s, as well as the likely molecular correlates of these (and the IK,slow and Iss) currents, are discussed.

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Cite This Study

Xu et al. (1999) studied None (Mouse ventricular myocytes). Adult mouse ventricular myocytes express four distinct K+ currents, with Ito,f density significantly lower in septum cells compared to apex cells (6.8 vs 34.6 pA/pF, P<0.001).

synapsesocial.com/papers/6a12f07192637892a9a78b16https://doi.org/10.1085/jgp.113.5.661
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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