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Maximum Shortening Velocity and Myosin Heavy-chain Isoform Expression in Human Masseter Muscle Fibers

机译:人类咬肌肌纤维的最大缩短速度和肌球蛋白重链同工型表达。

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摘要

While human masseter muscle is known to have unusual co-expression of myosin heavy-chain proteins, cellular kinetics of individual fibers has not yet been tested. Here we examine if myosin heavy-chain protein content is closely correlated to fiber-shortening speed, as previously reported in other human muscles, or if these proteins do not correlate well to shortening speeds, as has been demonstrated previously in rat muscle. Slack-test recordings of single, skinned human masseter fibers at 15°C revealed maximum shortening velocities generally slower and much more variable than those recorded in human limb muscle. The slowest fiber recorded had a maximum shortening velocity (V0) value of 0.027 muscle lengths • s−1, several times slower than the slowest type I fibers previously measured in humans. By contrast, human limb muscle controls produced V0 measurements comparable with previously published results. Analysis by gel electrophoresis found 63% of masseter fibers to contain pure type I MyHC and the remainder to co-express mostly type I in various combinations with IIA and IIX isoforms. V0 in masseter fibers forms a continuum in which no clear relationship to MyHC isoform content is apparent.
机译:尽管已知人类咬肌具有异常的肌球蛋白重链蛋白共表达,但尚未测试单个纤维的细胞动力学。在这里,我们检查肌球蛋白重链蛋白含量是否与纤维缩短速度密切相关(如先前在其他人的肌肉中报道的那样),或者这些蛋白与缩短速度没有很好的相关性(如先前在大鼠肌肉中所证明的)。在15°C时,单皮人类咬肌纤维的松弛测试记录显示,最大收缩速度通常比人类肢体肌肉中记录的速度更慢且变化更大。记录的最慢的纤维的最大缩短速度(V0)值为0.027肌肉长度•s -1 ,比以前在人体中测得的最慢的I型纤维慢几倍。相比之下,人体四肢肌肉控制产生的V0测量值可与先前发表的结果相媲美。通过凝胶电泳分析发现63%的咬肌纤维含有纯I型MyHC,其余部分以与IIA和IIX同工型的多种组合共表达大多数I型。咬肌中的V0形成一个连续体,其中与MyHC同工型含量没有明显的联系。

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