School of Nursing, and Medical Skill Experiment Teaching Center, Suzhou Medical College, Soochow University, Suzhou, 215006, China.
Department of Anatomy and Cell Biology, Carver College of Medicine, University of Iowa, 51 Newton Rd, Iowa City, IA, 52242, USA.
J Muscle Res Cell Motil. 2022 Dec;43(4):157-172. doi: 10.1007/s10974-022-09627-z. Epub 2022 Aug 22.
The effect of obesity on cross-bridge (CB) function was investigated in mice lacking functional Melanocortin-4 Receptor (MC4R), the loss of which causes dilated cardiomyopathy (DCM) in humans and mice. Skinned cardiac muscle fibers from male and female mice were used, and activated in the presence of Ca. To characterize CB kinetics, we changed the length of fibers in sinewaves (15 frequencies: 1‒187 Hz) at a small amplitude (0.2%L), studied concomitant tension transients, and deduced the kinetic constants of the CB cycle from the ATP and Pi effects. In males, active tension and stiffness during full activation and rigor were ~ 1.5X in WT compared to MC4R mice. This effect was not observed in females. We also observed that ATP binding and subsequent CB detachment steps were not altered by the mutation/gender. The equilibrium constant of the force generation step (K) and Pi release step (association constant: K) were not affected by the mutation, but there was a gender difference in WT mice: K and K were ~ 2.2X in males than in females. Concomitantly, the forward rate constant (r) and backward rate constant (r) of the force generation step were 1.5-2.5X in muscles from female MC4R mice relative to male MC4R mice. However, these effects did not cause a significant difference in CB distributions among six CB states. In both genders, Ca sensitivity decreased slightly (0.12 pCa unit) in mutants. We conclude that the CB functions are differentially affected both by obesity induced in the absence of functional MC4R and gender.
研究了缺乏功能性黑素皮质素受体 4(MC4R)的小鼠中肌球蛋白横桥(CB)功能的变化,MC4R 的缺失会导致人类和小鼠扩张型心肌病(DCM)。使用雄性和雌性小鼠的去皮心肌纤维,并在 Ca 的存在下激活。为了描述 CB 动力学,我们在小振幅(0.2%L)下正弦波(15 个频率:1-187 Hz)中改变纤维的长度,研究伴随的张力瞬变,并从 ATP 和 Pi 的影响中推断 CB 循环的动力学常数。在雄性中,与 WT 相比,MC4R 小鼠在完全激活和强直时的主动张力和刚性高约 1.5X。这种影响在雌性中没有观察到。我们还观察到,ATP 结合和随后的 CB 脱离步骤不受突变/性别影响。力生成步骤(K)和 Pi 释放步骤(缔合常数:K)的平衡常数不受突变影响,但在 WT 小鼠中存在性别差异:K 和 K 在雄性中比在雌性中高约 2.2X。同时,力生成步骤的正向速率常数(r)和反向速率常数(r)在雌性 MC4R 小鼠的肌肉中比雄性 MC4R 小鼠高 1.5-2.5X。然而,这些影响并没有导致六个 CB 状态中 CB 分布的显著差异。在两性中,突变体的 Ca 敏感性略有降低(0.12 pCa 单位)。我们得出结论,CB 功能既受缺乏功能性 MC4R 诱导的肥胖影响,也受性别影响。