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The Drosophila indirect flight muscle myosin heavy chain isoform is insufficient to transform the jump muscle into a highly stretch-activated muscle type

机译:果蝇间接飞行肌肉肌球蛋白重链同工型不足以将跳跃的肌肉转化为高度拉伸激活的肌肉类型

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摘要

Stretch activation (SA) is a delayed increase in force that enables high power and efficiency from a cyclically contracting muscle. SA exists in various degrees in almost all muscle types. In Drosophila, the indirect flight muscle (IFM) displays exceptionally high SA force production (FSA), whereas the jump muscle produces only minimal FSA. We previously found that expressing an embryonic (EMB) myosin heavy chain (MHC) isoform in the jump muscle transforms it into a moderately SA muscle type and enables positive cyclical power generation. To investigate whether variation in MHC isoforms is sufficient to produce even higher FSA, we substituted the IFM MHC isoform (IFI) into the jump muscle. Surprisingly, we found that IFI only caused a 1.7-fold increase in FSA, less than half the increase previously observed with EMB, and only at a high Pi concentration, 16 mM. This IFI-induced FSA is much less than what occurs in IFM, relative to isometric tension, and did not enable positive cyclical power generation by the jump muscle. Both isometric tension and FSA of control fibers decreased with increasing Pi concentration. However, for IFI-expressing fibers, only isometric tension decreased. The rate of FSA generation was ~1.5-fold faster for IFI fibers than control fibers, and both rates were Pi dependent. We conclude that MHC isoforms can alter FSA and hence cyclical power generation but that isoforms can only endow a muscle type with moderate FSA. Highly SA muscle types, such as IFM, likely use a different or additional mechanism.
机译:拉伸激活(SA)是延迟的力量增加,它可以使周期性收缩的肌肉获得较高的力量和效率。 SA几乎在所有肌肉类型中都有不同程度的存在。在果蝇中,间接飞行肌肉(IFM)显示出异常高的SA力产生(FSA),而跳跃肌仅产生极少的FSA。我们先前发现,在跳跃肌中表达胚胎(EMB)肌球蛋白重链(MHC)同工型会将其转化为中度SA肌肉类型,并实现积极的周期性发电。为了研究MHC亚型的变异是否足以产生更高的FSA,我们将IFM MHC亚型(IFI)替换为跳跃肌。出乎意料的是,我们发现IFI仅导致FSA增加1.7倍,不到EMB以前观察到的增加的一半,并且仅在高Pi浓度下(16 mM)引起。相对于等轴测张力,这种由IFI诱导的FSA远小于IFM中发生的FSA,并且无法使跳跃肌肉产生积极的周期性动力。对照纤维的等轴测张力和FSA都随Pi浓度的增加而降低。但是,对于表达IFI的纤维,只有等轴测张力降低。 IFI纤维的FSA生成速率比对照纤维快约1.5倍,并且两种速率均取决于Pi。我们得出的结论是,MHC亚型可以改变FSA,从而改变周期性发电,但亚型只能赋予中等FSA的肌肉类型。高度SA肌肉类型(例如IFM)可能使用其他或其他机制。

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