Department of Bioengineering, University of Washington, Seattle, WA, USA.
Center of Translational Muscle Research, University of Washington , Seattle, WA, USA.
J Gen Physiol. 2024 Nov 4;156(11). doi: 10.1085/jgp.202413545. Epub 2024 Sep 20.
Sarcomere activation in striated muscle requires both thin filament-based and thick filament-based activation mechanisms. Recent studies have shown that myosin heads on the thick filaments undergo OFF to ON structural transitions in response to calcium (Ca2+) in permeabilized porcine myocardium in the presence of a small molecule inhibitor that eliminated active force. The changes in X-ray diffraction signatures of OFF to ON transitions were interpreted as Ca2+ acting to activate the thick filaments. Alternatively, Ca2+ binding to troponin could initiate a Ca2+-dependent crosstalk from the thin filament to the thick filament via interfilament connections such as the myosin binding protein-C. Here, we exchanged native troponin in permeabilized porcine myocardium for troponin containing the cTnC D65A mutation, which disallows the activation of troponin through Ca2+ binding to determine if Ca2+-dependent thick filament activation persists in the absence of thin filament activation. After the exchange protocol, over 95% of the Ca2+-activated force was eliminated. Equatorial intensity ratio increased significantly in both WT and D65A exchanged myocardium with increasing Ca2+ concentration. The degree of helical ordering of the myosin heads decreased by the same amount in WT and D65A myocardium when Ca2+ concentration increased. These results are consistent with a direct effect of Ca2+ in activating the thick filament rather than an indirect effect due to Ca2+-mediated crosstalk between the thick and thin filaments.
横纹肌的肌节激活需要基于细丝和基于粗丝的激活机制。最近的研究表明,在小分子抑制剂存在的情况下,猪心肌通透化后,肌球蛋白头部在钙离子(Ca2+)的作用下发生 OFF 到 ON 的结构转变,这种抑制剂消除了主动力。OFF 到 ON 转变的 X 射线衍射特征的变化被解释为 Ca2+ 激活粗丝。或者,肌钙蛋白与 Ca2+ 的结合可以通过肌球蛋白结合蛋白-C 等细丝间连接,引发从细丝到粗丝的 Ca2+ 依赖性串扰。在这里,我们用含有 cTnC D65A 突变的肌钙蛋白替换了通透化的猪心肌中的天然肌钙蛋白,该突变阻止肌钙蛋白通过 Ca2+ 结合激活,以确定在没有细丝激活的情况下,Ca2+ 依赖性粗丝激活是否持续。交换方案后,超过 95%的 Ca2+-激活力被消除。随着 Ca2+浓度的增加,WT 和 D65A 交换心肌的赤道强度比均显著增加。当 Ca2+浓度增加时,WT 和 D65A 心肌中肌球蛋白头部的螺旋有序性下降相同的程度。这些结果与 Ca2+ 直接激活粗丝的直接作用一致,而不是由于 Ca2+-介导的粗丝和细丝之间的串扰的间接作用。