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October 1, 1990Annual Review of Physiology362 citations

Regulation of Cardiac L-Type Calcium Current by Phosphorylation and G Proteins

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WTW. TrautweinJHJ. Hescheler

Key Result

The concept of cardiac L-type calcium channel regulation via signal transduction processes and cAMP-dependent phosphorylation has become more elaborate over the past decade.

Key Points

  • This research aims to explore how phosphorylation and G proteins affect cardiac L-type calcium channels.
  • Assess the role of voltage-dependent Ca2+ channels in cardiac cells' electromechanical coupling.
  • Analyze the impact of Ca2+ entry on calcium-induced calcium release from the sarcoplasmic reticulum.
  • Investigate the influence of hormones and neurotransmitters on Ca2+ channel activity.
  • Voltage-dependent Ca2+ channels significantly contribute to cardiac contraction initiation.
  • Phosphorylation through cAMP-dependent pathways enhances Ca2+ channel activity.
  • G protein signaling plays a crucial role in the modulation of action potential duration and refractoriness.

Structured PICO

P
Population
Cardiac cells (basic science review)
I
Intervention
Regulation by phosphorylation and G proteins
O
Outcome
Modulation of cardiac L-type calcium current

Provides a comprehensive review of the signal transduction and phosphorylation mechanisms regulating cardiac L-type calcium channels.

Abstract

Voltage-dependent Ca2+ channels play a major role in the electromechanical coupling of cardiac cells. During the plateau phase Ca2+ entry induces a Ca2+ -dependent Ca2+ release from the sarcoplasmic reticulum and con­ sequently the initiation of contraction (for review see 41). Voltage-dependent Ca2+ channels are also involved in the spontaneous impulse generation as well as in the duration of the action potentials and hence in refractoriness. Ca2+ channels are also the target of various hormones and neurotransmitters. In an Annual Review of Physiology that appeared ten years ago, Reuter (112) suggested a hypothetical scheme for the �-adrenergic control of Ca2+ chan­ nels by cAMP-dependent phosphorylation, but direct experimental evidence for this was still missing (further reviews see 90, 125, 133, 134). In the subsequent decade the concept of regulation via the signal transduction process and phosphorylation became more elaborate by analysis of the

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Cite This Study

Trautwein et al. (1990) conducted a review in Cardiac L-Type Calcium Current regulation. The concept of cardiac L-type calcium channel regulation via signal transduction processes and cAMP-dependent phosphorylation has become more elaborate over the past decade.

synapsesocial.com/papers/6a15fc1bd9ab26d82ed14825https://doi.org/10.1146/annurev.ph.52.030190.001353
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