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Alternative N-Terminal Regions of Drosophila Myosin Heavy Chain Tune Muscle Kinetics for Optimal Power Output

机译:果蝇肌球蛋白重链调肌肉动力学的N末端替代区域可产生最佳功率

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摘要

We assessed the influence of alternative versions of a region near the N-terminus of Drosophila myosin heavy chain on muscle mechanical properties. Previously, we exchanged N-terminal regions (encoded by alternative exon 3s) between an embryonic (EMB) isoform and the indirect flight muscle isoform (IFI) of myosin, and demonstrated that it influences solution ATPase rates and in vitro actin sliding velocity. Because each myosin is expressed in Drosophila indirect flight muscle, in the absence of other myosin isoforms, this allows for muscle mechanical and whole organism locomotion assays. We found that exchanging the flight muscle specific exon 3 region into the embryonic isoform (EMB-3b) increased maximum power generation (Pmax) and optimal frequency of power generation (fmax) threefold and twofold compared to fibers expressing EMB, whereas exchanging the embryonic exon 3 region into the flight muscle isoform (IFI-3a) decreased Pmax and fmax to ∼80% of IFI fiber values. Drosophila expressing IFI-3a exhibited a reduced wing beat frequency compared to flies expressing IFI, which optimized power generation from their kinetically slowed flight muscle. However, the slower wing beat frequency resulted in a substantial loss of aerodynamic power as manifest in decreased flight performance of IFI-3a compared to IFI. Thus the N-terminal region is important in tuning myosin kinetics to match muscle speed for optimal locomotory performance.
机译:我们评估了果蝇肌球蛋白重链N末端附近区域的替代版本对肌肉力学性能的影响。以前,我们在肌球蛋白的胚胎(EMB)亚型和间接飞行肌肉亚型(IFI)之间交换了N末端区域(由替代外显子3s编码),并证明了它会影响溶液ATPase的速率和体外肌动蛋白的滑动速度。因为每种肌球蛋白都在果蝇间接飞行肌肉中表达,所以在没有其他肌球蛋白同工型的情况下,这可以进行肌肉机械和整个生物的运动测定。我们发现,将飞行肌肉特定外显子3区域交换为胚胎同工型(EMB-3b),与表达EMB的纤维相比,最大发电量(Pmax)和最佳发电频率(fmax)分别增加了三倍和两倍。飞行肌同种型(IFI-3a)中的3个区域将Pmax和fmax降低至IFI纤维值的〜80%。与表达IFI的果蝇相比,表达IFI-3a的果蝇表现出降低的机翼搏动频率,果蝇从其动力学减慢的飞行肌肉中优化了发电。然而,较慢的机翼拍频导致空气动力的大幅损失,这与IFI-3a的飞行性能相比IFI下降是明显的。因此,N-末端区域对于调节肌球蛋白动力学以匹配肌肉速度以达到最佳机体性能非常重要。

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