Regulation of the L-type Ca2+ channel during cardiomyogenesis:: switch from NO to adenylyl cyclase-mediated inhibition

被引:83
作者
Ji, GJ
Fleischmann, BK
Bloch, W
Feelisch, M
Andressen, C
Addicks, K
Hescheler, J
机构
[1] Univ Cologne, Inst Neurophysiol, D-50931 Cologne, Germany
[2] Univ Cologne, Inst Anat 1, D-5000 Cologne, Germany
[3] UCL, Wolfson Inst Biomed Res, London, England
关键词
ES cell-derived cardiomyocytes; patch-clamp; nitric oxide; switch in the regulation of I-Ca during development;
D O I
10.1096/fasebj.13.2.313
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In adult mammalian cardiomyocytes, stimulation of muscarinic receptors counterbalances the beta-adrenoceptor-mediated increase in myocardial contractility and heart rate by decreasing the L-type Ca2+ current (I-Ca) (1, 2). This effect is mediated via inhibition of adenylyl cyclase and subsequent reduction of cAMP-dependent phosphorylation of voltage-dependent L-type Ca2+ channels (3). Little is known, however, about the nature and origin of this pivotal inhibitory pathway. Using embryonic stem cells as an in vitro model of cardiomyogenesis, we found that muscarinic agonists depress I-Ca by 58 +/- 3% (n=34) in early stage cardiomyocytes lacking functional beta-adrenoceptors. The cholinergic inhibition is mediated by the nitric oxide (NO)/cGMP system since it was abolished by application of NOS inhibitors (L-NMA, L-NAME), an inhibitor of the soluble guanylyl cyclase (ODQ), and a selective phosphodiesterase type II antagonist (EHNA). The NO/cGMP-mediated I-Ca depression was dependent on a reduction of cAMP/ protein kinase A (PKA) levels since application of the catalytic subunit of PKA or of the PKA inhibitor PK) prevented the carbachol effect. In late development stage cells, as reported for ventricular cardiomyocytes (2, 4), muscarinic agonists had no effect on basal I-Ca but antagonized beta-adrenoceptor-stimulated I-Ca by 43 +/- 4% (n=16). This switch in signaling pathways during development is associated with distinct changes in expression of the two NO-producing isoenzymes, eNOS and iNOS, respectively. These findings indicate a fundamental role for NO as a signaling molecule during early embryonic development and demonstrate a switch in the signaling cascades governing I-Ca regulation.
引用
收藏
页码:313 / 324
页数:12
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