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mdm肌肉的透化纤维束中残余力增强作用降低。

Residual force enhancement is reduced in permeabilized fiber bundles from mdm muscles.

作者信息

Mishra Dhruv, Nishikawa Kiisa C

机构信息

Department of Biological Sciences, Northern Arizona University, Flagstaff, AZ 86011, USA.

出版信息

J Exp Biol. 2022 May 15;225(10). doi: 10.1242/jeb.243732. Epub 2022 May 26.

DOI:10.1242/jeb.243732
PMID:35514253
Abstract

Residual force enhancement (RFE) is the increase in steady-state force after active stretch relative to the force during isometric contraction at the same final length. The muscular dystrophy with myositis (mdm) mutation in mice, characterized by a small deletion in N2A titin, has been proposed to prevent N2A titin-actin interactions so that active mdm muscles are more compliant than wild type (WT). This decrease in active muscle stiffness is associated with reduced RFE. We investigated RFE in permeabilized soleus (SOL) and extensor digitorum longus (EDL) fiber bundles from WT and mdm mice. On each fiber bundle, we performed active and passive stretches from an average sarcomere length of 2.6-3.0 µm at a slow rate of 0.04 µm s-1, as well as isometric contractions at the initial and final lengths. One-way ANOVA showed that SOL and EDL fiber bundles from mdm mice exhibited significantly lower RFE than WT mice (P<0.0001). This result is consistent with previous observations in single myofibrils and intact muscles. However, it contradicts the results from a previous study that appeared to show that compensatory mechanisms could restore titin force enhancement in single fibers from mdm psoas. We suggest that RFE measured previously in mdm single fibers was an artifact of the high variability in passive tension found in degenerating fibers, which begins after ∼24 days of age. The results are consistent with the hypothesis that RFE is reduced in mdm skeletal muscles owing to impaired Ca2+-dependent titin-actin interactions resulting from the small deletion in N2A titin.

摘要

残余力增强(RFE)是指在主动拉伸后稳态力相对于在相同最终长度下等长收缩时的力的增加。小鼠中患有肌炎的肌肉营养不良(mdm)突变,其特征是N2A肌联蛋白存在小的缺失,有人提出该突变会阻止N2A肌联蛋白与肌动蛋白的相互作用,从而使mdm活性肌肉比野生型(WT)更具顺应性。活性肌肉僵硬度的这种降低与RFE的降低有关。我们研究了来自WT和mdm小鼠的透化比目鱼肌(SOL)和趾长伸肌(EDL)纤维束中的RFE。在每个纤维束上,我们以0.04 µm s-1的缓慢速率从平均肌节长度2.6 - 3.0 µm进行主动和被动拉伸,以及在初始和最终长度下进行等长收缩。单因素方差分析表明,mdm小鼠的SOL和EDL纤维束的RFE显著低于WT小鼠(P<0.0001)。这一结果与先前在单个肌原纤维和完整肌肉中的观察结果一致。然而,它与先前一项研究的结果相矛盾,该研究似乎表明补偿机制可以恢复mdm腰大肌单纤维中的肌联蛋白力增强。我们认为,先前在mdm单纤维中测量的RFE是退化纤维中被动张力高变异性的假象,这种高变异性在约24日龄后开始出现。这些结果与以下假设一致,即由于N2A肌联蛋白中的小缺失导致Ca2+依赖性肌联蛋白 - 肌动蛋白相互作用受损,mdm骨骼肌中的RFE降低。

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Residual force enhancement is reduced in permeabilized fiber bundles from mdm muscles.mdm肌肉的透化纤维束中残余力增强作用降低。
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引用本文的文献

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The distinctive mechanical and structural signatures of residual force enhancement in myofibers.肌纤维中残余力增强的独特力学和结构特征。
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2
Contributions of Titin and Collagen to Passive Stress in Muscles from Mice with a Small Deletion in Titin's Molecular Spring.肌球蛋白分子弹性能量贡献缺失型肌纤维中肌联蛋白和胶原蛋白对肌肉被动张力的影响
Int J Mol Sci. 2022 Aug 9;23(16):8858. doi: 10.3390/ijms23168858.