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Expression of slow skeletal troponin I in adult transgenic mouse heart muscle reduces the force decline observed during acidic conditions

机译:在成年转基因小鼠心肌中表达慢骨骼肌肌钙蛋白I可减少酸性条件下观察到的力下降

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摘要

Acidosis in cardiac muscle is associated with a decrease in developed force. We hypothesized that slow skeletal troponin I (ssTnI), which is expressed in neonatal hearts, is responsible for the observed decreased response to acidic conditions. To test this hypothesis directly, we used adult transgenic (TG) mice that express ssTnI in the heart. Cardiac TnI (cTnI) was completely replaced by ssTnI either with a FLAG epitope introduced into the N-terminus (TG-ssTnI*) or without the epitope (TG-ssTnI) in these mice. TG mice that express cTnI were also generated as a control TG line (TG-cTnI). Non-transgenic (NTG) littermates were used as controls.We measured the force-calcium relationship in all four groups at pH 7.0 and pH 6.5 in detergent-extracted fibre bundles prepared from left ventricular papillary muscles. The force-calcium relationship was identical in fibre bundles from NTG and TG-cTnI mouse hearts, therefore NTG mice served as controls for TG-ssTnI* and TG-ssTnI mice. Compared to NTG controls, the force generated by fibre bundles from TG mice expressing ssTnI was more sensitive to Ca2+. The shift in EC50 (the concentration of Ca2+ at which half-maximal force is generated) caused by acidic pH was significantly smaller in fibre bundles isolated from TG hearts compared to those from NTG hearts. However, there was no difference in the force-calcium relationship between hearts from the TG-ssTnI* and TG-ssTnI groups.We also isolated papillary muscles from the right ventricle of NTG and TG mouse hearts expressing ssTnI and measured isometric force at extracellular pH 7.33 and pH 6.75. At acidic pH, after an initial decline, twitch force recovered to 60 ± 3 % (n = 7) in NTG papillary muscles, 98 ± 2 % (n = 5) in muscles from TG-ssTnI* and 96 ± 3 % (n = 7) in muscles from TG-ssTnI hearts. Our results indicate that TnI isoform composition plays a crucial role in the determination of myocardial force sensitivity to acidosis.
机译:心肌酸中毒与力量的下降有关。我们假设在新生儿心脏中表达的慢速骨骼肌肌钙蛋白I(ssTnI)导致观察到的对酸性条件的反应减少。为了直接检验该假设,我们使用了在心脏中表达ssTnI的成年转基因(TG)小鼠。这些小鼠的心脏TnI(cTnI)被引入N端的FLAG表位(TG-ssTnI *)或无表位(TG-ssTnI)完全替换为ssTnI。还产生了表达cTnI的TG小鼠作为对照TG系(TG-cTnI)。以非转基因(NTG)同窝仔作为对照。我们测量了从左心室乳头肌制备的去污剂提取的纤维束在pH 7.0和pH 6.5时所有四个组的力-钙关系。在来自NTG和TG-cTnI小鼠心脏的纤维束中,力与钙的关系相同,因此NTG小鼠用作TG-ssTnI *和TG-ssTnI小鼠的对照。与NTG对照相比,TG小鼠表达ssTnI的纤维束产生的力对Ca2 +更为敏感。与从NTG心脏分离出的纤维束相比,从酸性pH引起的酸性pH引起的EC50的变化(产生最大力的Ca2 +浓度)要小得多。然而,TG-ssTnI *和TG-ssTnI组的心脏之间的力-钙关系没有差异。我们还从NTG和TG小鼠右心室的乳头肌中分离出表达ssTnI的乳头肌,并在细胞外pH下测量了等轴测力7.33和pH 6.75。在酸性pH下,最初下降后,抽搐力在NTG乳头肌中恢复到60±3%(n = 7),在TG-ssTnI *和96±3%(n中恢复到98±2%(n = 5)。 = 7)来自TG-ssTnI心脏的肌肉。我们的结果表明,TnI同工型成分在确定心肌对酸中毒的敏感性中起着至关重要的作用。

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