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NO-dependent Ca MKII activation during β-adrenergic stimulation of cardiac muscle

机译:β-肾上腺素刺激心肌中NO依赖的Ca MKII激活

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Aims During β-adrenergic receptor (β-AR) stimulation, phosphorylation of cardiomyocyte ryanodine receptors by protein kinases may contribute to an increased diastolic Ca2+ spark frequency. Regardless of prompt activation of protein kinase A during β-AR stimulation, this appears to rely more on activation of Ca2+/calmodulin-dependent protein kinase II (Ca MKII), by a not yet identified signalling pathway. The goal of the present study was to identify and characterize the mechanisms which lead to Ca MKII activation and elevated Ca2+ spark frequencies during b-AR stimulation in single cardiomyocytes in diastolic conditions. Methods and results: Confocal imaging revealed that β-AR stimulation increases endogenous NO production in cardiomyocytes, resulting in NO-dependent activation of Ca MKII and a subsequent increasein diastolic Ca2+ spark frequency. These changes ofspark frequency could be mimicked byexposure to the NO donor GSNO and were sensitive to the Ca MKII inhibitors KN-93 and AIP. In vitro, Ca MKII became nitrosated and its activity remained increased independent of Ca2+ in the presence of GSNO, as assessed with biochemical assays. Conclusions β-AR stimulation of cardiomyocytes may activate Ca MKII by a novel direct pathway involving NO, without requiring Ca2+ transients. This crosstalk between two established signalling pathways may contribute to arrhythmogenic diastolic Ca2+ release and Ca 2+ waves during adrenergic stress, particularly in combination with cardiac diseases. In addition, NO-dependent activation of Ca MKII is likely to have repercussions in many cellular signalling systems and cell types.
机译:目的在β-肾上腺素受体(β-AR)刺激过程中,蛋白激酶使心肌细胞ryanodine受体磷酸化,可能有助于舒张Ca2 +火花频率的增加。无论在β-AR刺激过程中蛋白激酶A是否迅速激活,这似乎都依赖于Ca2 + /钙调蛋白依赖性蛋白激酶II(Ca MKII)的激活,这是通过尚未确定的信号传导途径进行的。本研究的目的是鉴定和表征在舒张条件下单个心肌细胞在b-AR刺激过程中导致Ca MKII活化和Ca2 +火花频率升高的机制。方法和结果:共聚焦成像显示,β-AR刺激可增加心肌细胞内源性NO的产生,从而导致Ca MKII的NO依赖性活化,进而使舒张期Ca2 +火花频率增加。这些火花频率的变化可以通过暴露于NO供体GSNO中来模拟,并且对Ca MKII抑制剂KN-93和AIP敏感。在体外,通过生化分析评估,在GSNO存在下,Ca MKII被亚硝化,其活性保持独立于Ca 2+的增加。结论β-AR刺激心肌细胞可能通过涉及NO的新型直接途径激活Ca MKII,而无需Ca2 +瞬变。在肾上腺素能应激时,尤其是与心脏疾病结合时,两个已建立的信号通路之间的这种串扰可能会导致心律失常性舒张期Ca2 +释放和Ca 2+波。另外,Ca MKII的NO依赖性激活可能会在许多细胞信号系统和细胞类型中产生影响。

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