Department of Public Health, Research Unit for Exercise Biology, Aarhus University, Aarhus, Denmark.
Department of Kinesiology, Faculty of Applied Health Sciences, Brock University, St. Catharines, ON, Canada.
Pflugers Arch. 2022 Jun;474(6):637-646. doi: 10.1007/s00424-022-02681-z. Epub 2022 Mar 9.
The influence of moderately elevated extracellular potassium concentration ([K]) on muscle force has marked similarities to that of posttetanic potentiation (PTP) in that twitch force may be enhanced whilst high-frequency force is depressed. The purpose of this work was to test whether K-induced potentiation is mechanistically related to PTP via skeletal myosin light-chain kinase (skMLCK)-catalyzed phosphorylation of the myosin regulatory light chains (RLC). To do this, we assessed the influence of elevated [K] on the force response at various frequencies in extensor digitorum longus (EDL) muscles isolated from wild-type and skeletal myosin light-chain kinase (skMLCK) absent mice. Changing [K] of the incubation medium from 5 to 10 mmol increased isometric twitch force by a similar amount in wild-type and skMLCK muscles (~ 13% in both genotypes) (all data n = 7-8, P < 0.05). In contrast, 100- and 200-Hz forces were depressed in both genotypes (by 5-7 and 15-18%, respectively). The isometric twitch potentiation caused by a tetanic stimulus series was similar at both [K] levels for each genotype but was much greater for wild-type than for skMLCK muscles (i.e., 23-25 and 8-9%, respectively). Thus, we conclude that [K]- and stimulation-induced potentiation are additive and that [K]-induced potentiation is independent of RLC phosphorylation.
细胞外钾浓度([K])适度升高对肌肉力量的影响与强直后增强(PTP)非常相似,因为在高频率力被抑制的同时,抽搐力可能增强。这项工作的目的是测试 K 诱导的增强是否通过骨骼肌肌球蛋白轻链激酶(skMLCK)催化肌球蛋白调节轻链(RLC)的磷酸化与 PTP 在机制上相关。为此,我们评估了升高的 [K] 在从野生型和骨骼肌肌球蛋白轻链激酶(skMLCK)缺失小鼠分离的伸趾长肌(EDL)肌肉中对各种频率的力反应的影响。将孵育介质中的 [K] 从 5 增加到 10mmol,在野生型和 skMLCK 肌肉中均使等长抽搐力增加相似的幅度(两种基因型均增加约 13%)(所有数据 n=7-8,P<0.05)。相比之下,100 和 200Hz 的力在两种基因型中均降低(分别降低 5-7%和 15-18%)。对于每种基因型,由强直刺激序列引起的等长抽搐增强在两种 [K] 水平下相似,但在野生型肌肉中比在 skMLCK 肌肉中要强得多(即分别为 23-25%和 8-9%)。因此,我们得出结论,[K] 和刺激诱导的增强是相加的,并且 [K] 诱导的增强独立于 RLC 磷酸化。