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精英老年跑步者单根肌纤维的等长力和最大缩短速度。

Isometric force and maximal shortening velocity of single muscle fibers from elite master runners.

作者信息

Widrick J J, Trappe S W, Blaser C A, Costill D L, Fitts R H

机构信息

Department of Biology, Marquette University, Milwaukee, Wisconsin 53201, USA.

出版信息

Am J Physiol. 1996 Aug;271(2 Pt 1):C666-75. doi: 10.1152/ajpcell.1996.271.2.C666.

Abstract

Single chemically permeabilized gastrocnemius fibers from six elite endurance-trained master runners (RUN group) and five age-matched sedentary controls (SED group) were mounted between a force transducer and a position motor, studied under conditions of maximal and submaximal Ca2+ activation, and subsequently electrophoresed on 5% polyacrylamide gels to determine myosin heavy chain (MHC) composition. For the SED group, peak isometric tension (Pzero) averaged 143 +/- 3, 156 +/- 4, and 170 +/- 4 kN/m2 and maximal shortening velocity (Vzero) averaged 0.43 +/- 0.01, 1.90 +/- 0.08, and 5.59 +/- 0.40 fiber lengths/s for fibers expressing type I, IIa, and IIx MHC, respectively (all comparisons, P < 0.05). Hill plot analysis of relative forces during submaximal Ca2+ activation indicated no SED vs. RUN differences in Ca2+ sensitivity or in the cooperativity of Ca2+ activation. However, at maximal Ca2+ activation, RUN type I and IIa fibers produced 15% less peak absolute force than SED fibers (P < 0.05). This reduction in fiber force was a direct result of the smaller diameter of the RUN fibers (P < 0.05), because Pzero, peak elastic modulus (Ezero), and Pzero/Ezero were not different between SED and RUN groups. RUN type I fibers also displayed a mean Vzero that was 19% higher than the average Vzero of the SED type I fibers (P < 0.05). In separate experiments, quantification of relative myosin light chain (MLC) isoform content revealed a 28% greater ratio of MLC3 to MLC2 in single type I fibers from the RUN group (P < 0.05), suggesting that the elevated Vzero of the RUN type I fibers was related to a greater expression of MLC3. In conclusion, the single fibers from the elite master runners displayed specific morphological and contractile properties that may enhance the performance of these athletes during prolonged muscular activity.

摘要

选取6名精英耐力训练成年长跑运动员(RUN组)和5名年龄匹配的久坐不动的对照组(SED组)的单根经化学通透处理的腓肠肌纤维,将其安装在力传感器和位置电机之间,在最大和次最大Ca2+激活条件下进行研究,随后在5%聚丙烯酰胺凝胶上进行电泳以确定肌球蛋白重链(MHC)组成。对于SED组,表达I型、IIa型和IIx型MHC的纤维的等长收缩峰值张力(Pzero)平均分别为143±3、156±4和170±4 kN/m2,最大缩短速度(Vzero)平均分别为0.43±0.01、1.90±0.08和5.59±0.40纤维长度/秒(所有比较,P<0.05)。次最大Ca2+激活期间相对力的希尔图分析表明,SED组与RUN组在Ca2+敏感性或Ca2+激活的协同性方面没有差异。然而,在最大Ca2+激活时,RUN组的I型和IIa型纤维产生的绝对峰值力比SED组纤维少15%(P<0.05)。纤维力的这种降低是RUN组纤维直径较小的直接结果(P<0.05),因为SED组和RUN组之间的Pzero、峰值弹性模量(Ezero)和Pzero/Ezero没有差异。RUN组的I型纤维的平均Vzero也比SED组I型纤维的平均Vzero高19%(P<0.05)。在单独的实验中,相对肌球蛋白轻链(MLC)同工型含量的定量分析显示,RUN组单根I型纤维中MLC3与MLC2的比例高28%(P<0.05),这表明RUN组I型纤维的Vzero升高与MLC3的表达增加有关。总之,精英成年长跑运动员的单根纤维表现出特定的形态和收缩特性,这可能会提高这些运动员在长时间肌肉活动中的表现。

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