Graf E M, Heubach J F, Ravens U
Institut für Pharmakologie und Toxikologie, Medizinische Fakultät Carl Gustav Carus der Technischen Universität Dresden, Germany.
Naunyn Schmiedebergs Arch Pharmacol. 2001 Aug;364(2):131-9. doi: 10.1007/s002100100431.
In transgenic mice (TG4) overexpressing the human beta2-adrenoceptor (beta2-AR), unoccupied receptors are supposed to activate spontaneously the signalling cascade, leading to enhanced levels of cAMP. This second messenger shifts activation curves of the hyperpolarization-activated current If towards less negative potentials. Here, we characterize If of ventricular myocytes from non-transgenic littermate (LM) and TG4 mice and investigate whether If is modulated by spontaneous beta2-AR signalling. If was activated in whole-cell voltage-clamp experiments during test steps ranging from -65 mV to -135 mV (holding potential: -55 mV; 36 degrees C). In TG4 the maximum amplitude was fivefold larger than in LM myocytes (-1.10 +/- 0.11 pA/pF vs. -0.22 +/- 0.04 pA/pF at -135 mV), and the potential for half-maximum If current (VI0.5) was less negative (-100.5 +/- 1.0 mV in TG4 vs. -108.4 +/- 2.6 mV in LM). (-)-Isoproterenol (1 microM) shifted VI0.5 of LM myocytes by 10.4 mV towards less negative potentials but had no significant effect in TG4. However, the inverse beta2-AR agonist ICI 118,551 (300 nM) shifted VI0.5 of TG4 myocytes to values observed in LM under control conditions, suggesting a relation to spontaneously active beta2-ARs. Enhanced expression of hyperpolarization-activated and cyclic nucleotide gated channels (HCN) could contribute to increased maximum If amplitude in TG4 myocytes. Semi-quantitative RT-PCR analysis demonstrated a 1.8-fold elevation of HCN4 mRNA and no significant change for HCN2 mRNA in TG4 ventricle. Cardiac hypertrophy was not detected in TG4 mice investigated here. We conclude that spontaneous beta2-AR signalling in hearts of TG4 mice shifts If current-voltage relation towards less negative potentials. Increased maximum If amplitude in TG4 myocytes is in line with enhanced expression of HCN channels. Both mechanisms could contribute to larger inward current at physiological diastolic potentials.
在过表达人β2 - 肾上腺素能受体(β2 - AR)的转基因小鼠(TG4)中,未被占据的受体被认为会自发激活信号级联反应,导致环磷酸腺苷(cAMP)水平升高。这种第二信使会使超极化激活电流If的激活曲线向负电位较小的方向移动。在此,我们对非转基因同窝小鼠(LM)和TG4小鼠心室肌细胞的If进行了特性描述,并研究If是否受到自发β2 - AR信号传导的调节。在全细胞电压钳实验中,在从 - 65 mV到 - 135 mV的测试步阶期间(钳制电位: - 55 mV;36℃)激活If。在TG4中,最大幅度比LM心肌细胞大五倍(在 - 135 mV时为 - 1.10±0.11 pA/pF 对比 - 0.22±0.04 pA/pF),并且If电流半最大值时的电位(VI0.5)负性较小(TG4中为 - 100.5±1.0 mV 对比LM中为 - 108.4±2.6 mV)。( - ) - 异丙肾上腺素(1μM)使LM心肌细胞的VI0.5向负性较小的电位方向移动了10.4 mV,但对TG4没有显著影响。然而,β2 - AR反向激动剂ICI 118,551(300 nM)将TG4心肌细胞的VI0.5转移到在对照条件下LM中观察到的值,表明与自发激活的β2 - ARs有关。超极化激活的环核苷酸门控通道(HCN)表达增强可能导致TG4心肌细胞中最大If幅度增加。半定量逆转录 - 聚合酶链反应(RT - PCR)分析表明,TG4心室中HCN4 mRNA升高了1.8倍,而HCN2 mRNA没有显著变化。在此研究的TG4小鼠中未检测到心脏肥大。我们得出结论,TG4小鼠心脏中的自发β2 - AR信号传导使If电流 - 电压关系向负性较小的电位方向移动。TG4心肌细胞中最大If幅度增加与HCN通道表达增强一致。这两种机制都可能导致在生理舒张电位时更大的内向电流。