Literature DB >> 19620129

Transgenic simulation of human heart failure-like L-type Ca2+-channels: implications for fibrosis and heart rate in mice.

Nadine Beetz1, Lutz Hein, Janos Meszaros, Ralf Gilsbach, Frederico Barreto, Marcel Meissner, Uta C Hoppe, Arnold Schwartz, Stefan Herzig, Jan Matthes.   

Abstract

AIMS: Cardiac L-type Ca(2+)-currents show distinct alterations in chronic heart failure, including increased single-channel activity and blunted adrenergic stimulation, but minor changes of whole-cell currents. Expression of L-type Ca(2+)-channel beta(2)-subunits is enhanced in human failing hearts. In order to determine whether prolonged alteration of Ca(2+)-channel gating by beta(2)-subunits contributes to heart failure pathogenesis, we generated and characterized transgenic mice with cardiac overexpression of a beta(2a)-subunit or the pore Ca(v)1.2 or both, respectively. METHODS AND
RESULTS: Four weeks induction of cardiac-specific overexpression of rat beta(2a)-subunits shifted steady-state activation and inactivation of whole-cell currents towards more negative potentials, leading to increased Ca(2+)-current density at more negative test potentials. Activity of single Ca(2+)-channels was increased in myocytes isolated from beta(2a)-transgenic mice. Ca(2+)-current stimulation by 8-Br-cAMP and okadaic acid was blunted in beta(2a)-transgenic myocytes. In vivo investigation revealed hypotension and bradycardia upon Ca(v)1.2-transgene expression but not in mice only overexpressing beta(2a). Double-transgenics showed cardiac arrhythmia. Interstitial fibrosis was aggravated by the beta(2a)-transgene compared with Ca(v)1.2-transgene expression alone. Overt cardiac hypertrophy was not observed in any model.
CONCLUSION: Cardiac overexpression of a Ca(2+)-channel beta(2a)-subunit alone is sufficient to induce Ca(2+)-channel properties characteristic of chronic human heart failure. beta(2a)-overexpression by itself did not induce cardiac hypertrophy or contractile dysfunction, but aggravated the development of arrhythmia and fibrosis in Ca(v)1.2-transgenic mice.

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Year:  2009        PMID: 19620129      PMCID: PMC2777953          DOI: 10.1093/cvr/cvp251

Source DB:  PubMed          Journal:  Cardiovasc Res        ISSN: 0008-6363            Impact factor:   10.787


  26 in total

1.  Novel functional properties of Ca(2+) channel beta subunits revealed by their expression in adult rat heart cells.

Authors:  Henry M Colecraft; Badr Alseikhan; Shoji X Takahashi; Dipayan Chaudhuri; Scott Mittman; Vasan Yegnasubramanian; Rebecca S Alvania; David C Johns; Eduardo Marbán; David T Yue
Journal:  J Physiol       Date:  2002-06-01       Impact factor: 5.182

2.  Creation of a genetic calcium channel blocker by targeted gem gene transfer in the heart.

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3.  Feedback inhibition of catecholamine release by two different alpha2-adrenoceptor subtypes prevents progression of heart failure.

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Review 4.  Voltage-gated Ca2+ currents in the human pathophysiologic heart: a review.

Authors:  J P Bénitah; A M Gómez; J Fauconnier; B G Kerfant; E Perrier; G Vassort; S Richard
Journal:  Basic Res Cardiol       Date:  2002       Impact factor: 17.165

5.  Increased availability and open probability of single L-type calcium channels from failing compared with nonfailing human ventricle.

Authors:  F Schröder; R Handrock; D J Beuckelmann; S Hirt; R Hullin; L Priebe; R H Schwinger; J Weil; S Herzig
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6.  L-type calcium current in catecholamine-induced cardiac hypertrophy in the rat.

Authors:  J Mészáros; J J Coutinho; S M Bryant; K O Ryder; G Hart
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7.  Cardiac L-type calcium channel beta-subunits expressed in human heart have differential effects on single channel characteristics.

Authors:  Roger Hullin; Ismail Friedrich Yunus Khan; Susanne Wirtz; Paul Mohacsi; Gyula Varadi; Arnold Schwartz; Stefan Herzig
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8.  L-type Ca2+ channel density and regulation are altered in failing human ventricular myocytes and recover after support with mechanical assist devices.

Authors:  Xiongwen Chen; Valentino Piacentino; Satoshi Furukawa; Bruce Goldman; Kenneth B Margulies; Steven R Houser
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9.  Single-channel gating and regulation of human L-type calcium channels in cardiomyocytes of transgenic mice.

Authors:  Ferdi Groner; Marta Rubio; Patrick Schulte-Euler; Jan Matthes; Ismail F Y Khan; Ilona Bodi; Sheryl E Koch; Arnold Schwartz; Stefan Herzig
Journal:  Biochem Biophys Res Commun       Date:  2004-02-13       Impact factor: 3.575

Review 10.  Heart failure -- a challenge to our current concepts of excitation-contraction coupling.

Authors:  Ivar Sjaastad; J Andrew Wasserstrom; Ole M Sejersted
Journal:  J Physiol       Date:  2003-01-01       Impact factor: 5.182

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1.  {Alpha}2B-adrenoceptor deficiency leads to postnatal respiratory failure in mice.

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2.  Cardiac CaV1.2 channels require β subunits for β-adrenergic-mediated modulation but not trafficking.

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4.  Effect of MANT-nucleotides on L-type calcium currents in murine cardiomyocytes.

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5.  Enhanced basal contractility but reduced excitation-contraction coupling efficiency and beta-adrenergic reserve of hearts with increased Cav1.2 activity.

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6.  Exclusion of alternative exon 33 of CaV1.2 calcium channels in heart is proarrhythmogenic.

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7.  Cardiac phenotype induced by a dysfunctional α 1C transgene: a general problem for the transgenic approach.

Authors:  Girma Asemu; Kenneth Fishbein; Qi Zong Lao; Arippa Ravindran; Ron Herbert; Holly C Canuto; Richard G Spencer; Nikolai M Soldatov
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8.  Age- and gender-related changes in ventricular performance in wild-type FVB/N mice as evaluated by conventional and vector velocity echocardiography imaging: a retrospective study.

Authors:  Sheryl E Koch; Kevin J Haworth; Nathan Robbins; Margaret A Smith; Navneet Lather; Ahmad Anjak; Min Jiang; Priyanka Varma; W Keith Jones; Jack Rubinstein
Journal:  Ultrasound Med Biol       Date:  2013-06-19       Impact factor: 2.998

9.  β-adrenergic regulation of the L-type Ca2+ channel does not require phosphorylation of α1C Ser1700.

Authors:  Lin Yang; Alexander Katchman; Tahmina Samad; John Morrow; Richard Weinberg; Steven O Marx
Journal:  Circ Res       Date:  2013-07-03       Impact factor: 17.367

10.  Caveolin-3 regulates protein kinase A modulation of the Ca(V)3.2 (alpha1H) T-type Ca2+ channels.

Authors:  Yogananda S Markandeya; Jonathan M Fahey; Florentina Pluteanu; Leanne L Cribbs; Ravi C Balijepalli
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