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环磷酸腺苷(cAMP)门控和磷酸酶抑制对兔窦房结心肌细胞超极化激活电流(i(f))的差异调控

Differential control of the hyperpolarization-activated current (i(f)) by cAMP gating and phosphatase inhibition in rabbit sino-atrial node myocytes.

作者信息

Accili E A, Redaelli G, DiFrancesco D

机构信息

Università di Milano, Dipartimento di Fisiologia e Biochimica Generali, Italy.

出版信息

J Physiol. 1997 May 1;500 ( Pt 3)(Pt 3):643-51. doi: 10.1113/jphysiol.1997.sp022049.

Abstract
  1. The actions of the phosphatase inhibitor calyculin A on the hyperpolarization-activated cardiac 'pacemaker' current (i(f)) were determined in single cells isolated from the sino-atrial (SA) node of the rabbit. 2. Cells were incubated for 8 min in Tyrode solution containing calyculin A (0.5 microM) and then superfused with normal Tyrode solution. The mean normalized i(f) measured in eight cells at mid-activation voltages during and after exposure to calyculin A increased maximally by 47% with a time constant of 466 s, a time much longer than that required for cAMP-mediated i(f) stimulation (about 8 s). 3. In two-pulse protocols, calyculin A treatment increased i(f) at full as well as at mid-activation voltages, indicating a higher i(f) conductance. 4. Measurement of the conductance-voltage (gf(V)) relation by voltage ramp protocols confirmed a conductance increase by calyculin A, with no significant change in the position of the activation curve on the voltage axis. Data pooled together from ramp and two-pulse protocols yielded a calyculin A-induced increase in fully activated i(f) conductance of 39.6 +/- 6.4% (n = 16 cells). 5. The positive and negative shift of i(f) voltage dependence in response to beta-adrenergic (1 microM isoprenaline) and muscarinic stimulation (1 microM acetylcholine), respectively, was preserved after the calyculin A-induced increase in conductance. The shift of the i(f) activation curve induced by 1 microM isoprenaline was significantly larger in calyculin A-treated cells (8.8 vs. 5.8 mV). 6. These data indicate that phosphatase inhibition increases i(f) in a manner distinct from the direct cAMP pathway and potentiates the beta-adrenergic-mediated i(f) modulation.
摘要
  1. 在从兔窦房结分离出的单细胞中,测定了磷酸酶抑制剂花萼海绵诱癌素A对超极化激活的心脏“起搏”电流(I(f))的作用。2. 将细胞在含有花萼海绵诱癌素A(0.5微摩尔)的台氏液中孵育8分钟,然后用正常台氏液进行灌流。在暴露于花萼海绵诱癌素A期间及之后,在八个细胞中于激活电压中期测量的平均标准化I(f)最大增加了47%,时间常数为466秒,这一时间远长于cAMP介导的I(f)刺激所需的时间(约8秒)。3. 在双脉冲实验方案中,花萼海绵诱癌素A处理在完全激活电压以及激活电压中期均增加了I(f),表明I(f)电导更高。4. 通过电压斜坡实验方案测量电导-电压(gf(V))关系证实了花萼海绵诱癌素A使电导增加,激活曲线在电压轴上的位置无显著变化。来自斜坡和双脉冲实验方案的数据汇总得出,花萼海绵诱癌素A诱导完全激活的I(f)电导增加了39.6±6.4%(n = 16个细胞)。5. 在花萼海绵诱癌素A诱导电导增加后,分别对β-肾上腺素能(1微摩尔异丙肾上腺素)和毒蕈碱刺激(1微摩尔乙酰胆碱)的I(f)电压依赖性的正向和负向偏移得以保留。1微摩尔异丙肾上腺素诱导的I(f)激活曲线的偏移在花萼海绵诱癌素A处理的细胞中显著更大(8.8对5.8毫伏)。6. 这些数据表明,磷酸酶抑制以不同于直接cAMP途径的方式增加I(f),并增强β-肾上腺素能介导的I(f)调节。

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