Department of Integrative Physiology and Neuroscience, Washington State University, Pullman, WA.
Department of Integrative Physiology and Neuroscience, Washington State University, Pullman, WA
J Gen Physiol. 2019 May 6;151(5):635-644. doi: 10.1085/jgp.201812183. Epub 2019 Jan 2.
Shifts in myosin heavy chain (MHC) isoforms in cardiac myocytes have been shown to alter cardiac muscle function not only in healthy developing hearts but also in diseased hearts. In guinea pig hearts, there is a large age-dependent shift in MHC isoforms from 80% α-MHC/20% β-MHC at 3 wk to 14% α-MHC/86% β-MHC at 11 wk. Because kinetic differences in α- and β-MHC cross-bridges (XBs) are known to impart different cooperative effects on thin filaments, we hypothesize here that differences in α- and β-MHC expression in guinea pig cardiac muscle impact sarcomere length (SL)-dependent contractile function. We therefore measure steady state and dynamic contractile parameters in detergent-skinned cardiac muscle preparations isolated from the left ventricles of young (3 wk old) or adult (11 wk old) guinea pigs at two different SLs: short (1.9 µm) and long (2.3 µm). Our data show that SL-dependent effects on contractile parameters are augmented in adult guinea pig cardiac muscle preparations. Notably, the SL-mediated increase in myofilament Ca sensitivity (ΔpCa) is twofold greater in adult guinea pig muscle preparations (ΔpCa being 0.11 units in adult preparations but only 0.05 units in young preparations). Furthermore, adult guinea pig cardiac muscle preparations display greater SL-dependent changes than young muscle preparations in (1) the magnitude of length-mediated increase in the recruitment of new force-bearing XBs, (2) XB detachment rate, (3) XB strain-mediated effects on other force-bearing XBs, and (4) the rate constant of force redevelopment. Our findings suggest that increased β-MHC expression enhances length-dependent activation in the adult guinea pig cardiac myocardium.
肌球蛋白重链 (MHC) 同工型的变化不仅会改变健康发育心脏中的心肌功能,也会改变患病心脏中的心肌功能。在豚鼠心脏中,MHC 同工型从 3 周龄时的 80%α-MHC/20%β-MHC 到 11 周龄时的 14%α-MHC/86%β-MHC 发生了很大的年龄依赖性变化。由于α-和β-MHC 交联 (XB) 的动力学差异已知会对细肌丝产生不同的协同作用,我们在这里假设豚鼠心肌中α-和β-MHC 的表达差异会影响肌节长度 (SL) 依赖性收缩功能。因此,我们在两个不同的 SL 下测量了来自年轻(3 周龄)或成年(11 周龄)豚鼠左心室的去垢剂处理的心肌制备物的稳态和动态收缩参数:短(1.9 µm)和长(2.3 µm)。我们的数据表明,SL 对收缩参数的影响在成年豚鼠心肌制备物中增强。值得注意的是,成年豚鼠肌制备物中肌丝钙敏感性(ΔpCa)的 SL 介导增加是两倍(成年肌制备物的ΔpCa 为 0.11 个单位,而年轻肌制备物仅为 0.05 个单位)。此外,与年轻的肌肉制备物相比,成年豚鼠的心肌制备物在以下方面显示出更大的 SL 依赖性变化:(1)新力承载 XB 的募集程度的长度介导增加的幅度,(2)XB 脱离率,(3)XB 应变对其他力承载 XB 的影响,以及(4)力重新发展的速率常数。我们的研究结果表明,β-MHC 表达的增加增强了成年豚鼠心肌中的长度依赖性激活。