The rate at which an isometrically contracting muscle uses energy i'/> Superfast contractions without superfast energetics: ATP usage by SR-Ca2+ pumps and crossbridges in toadfish swimbladder muscle
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Superfast contractions without superfast energetics: ATP usage by SR-Ca2+ pumps and crossbridges in toadfish swimbladder muscle

机译:超快收缩而无超快能量:蟾蜍游泳膀胱肌肉中SR-Ca2 +泵和跨桥对ATP的使用

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摘要

class="enumerated" style="list-style-type:decimal">The rate at which an isometrically contracting muscle uses energy is thought to be proportional to its twitch speed. In both slow and fast muscles, however, a constant proportion (25-40 %) of the total energy has been found to be used by SR-Ca2+ pumps and the remainder by crossbridges. We examined whether SR-Ca2+ pumps account for a larger proportion of the energy in the fastest vertebrate muscle known (the toadfish swimbladder), and whether the swimbladder muscle utilizes energy at the superfast rate one would predict from its mechanics.The ATP utilization rates of the SR-Ca2+ pumps and crossbridges were measured using a coupled assay system on fibres skinned with saponin. Surprisingly, despite its superfast twitch speed, the ATP utilization rate of swimbladder was no higher than that of much slower fast-twitch amphibian muscles.The swimbladder achieves tremendous twitch speeds with a modest steady-state ATP utilization rate by employing two mechanisms: having a small number of attached crossbridges and probably utilizing intracellular Ca2+ buffers (parvalbumin) to spread out the time over which Ca2+ pumping can occur.Finally, although the total ATP utilization rate was not as rapid as expected, the relative proportions used by SR-Ca2+ pumps and the crossbridges were similar to other muscles.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 等距收缩的肌肉使用能量的速率被认为与其抽搐速度成正比。但是,在慢肌和快肌中,已发现SR-Ca 2 + 泵使用总能量的恒定比例(25-40%),其余部分则通过跨桥使用。我们检查了SR-Ca 2 + 泵是否在已知最快的脊椎动物肌肉(蟾鱼游泳膀胱)中占了较大比例的能量,以及游泳膀胱肌肉是否以超快的速率利用能量,这一点可以预测 使用耦合测定系统在皂素皮上的纤维上测量SR-Ca 2 + 泵和跨桥的ATP利用率。出乎意料的是,尽管抽搐速度超快,但它的ATP利用率却不及慢速两栖两栖肌肉的ATP利用率。通过两种机制:具有少量附着的跨桥,并可能利用细胞内Ca 2 + 缓冲液(小白蛋白)来分散可能发生Ca 2 + 泵送的时间 最后,尽管总ATP利用率不如预期的快,但SR-Ca 2 + 泵和横桥使用的相对比例与其他肌肉相似。

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