Literature DB >> 6320002

Beta-adrenergic modulation of calcium channels in frog ventricular heart cells.

B P Bean, M C Nowycky, R W Tsien.   

Abstract

Adrenergic modulation of calcium channels profoundly influences cardiac function, and has served as a prime example of neurohormonal regulation of voltage-gated ion channels. Channel modulation and increased Ca influx are mediated by elevation of intracellular cyclic AMP and protein phosphorylation. The molecular mechanism of the augmented membrane Ca conductance has attracted considerable interest. An increase in the density of functional channels has often been proposed, but there has previously been no direct evidence. Single-channel recordings show that isoprenaline or 8-bromocyclic AMP increase the proportion of time individual channels spend open by prolonging openings and shortening the closed periods between openings. To look for an additional contribution of changes in the number of functional channels, we applied ensemble fluctuation analysis to whole-cell recordings of cardiac Ca channel activity. Here we present evidence that in frog ventricular heart cells beta-adrenergic stimulation increases NF, the average number of functional Ca channels per cell. We also find that isoprenaline slows the time course of both activation and inactivation, and that the enhancement of peak current decreases gradually with greater membrane depolarization.

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Year:  1984        PMID: 6320002     DOI: 10.1038/307371a0

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  133 in total

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6.  Modulation of L-type calcium channels by sodium ions.

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Review 8.  Targeting mechanisms of high voltage-activated Ca2+ channels.

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9.  Age-associated changes in beta-adrenergic modulation on rat cardiac excitation-contraction coupling.

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10.  Regulation of the calcium slow channel by cyclic GMP dependent protein kinase in chick heart cells.

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