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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Dynamics of crossbridge-mediated activation in the heart.
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Dynamics of crossbridge-mediated activation in the heart.

机译:心脏中跨桥介导的激活的动力学。

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Both intracellular calcium and strongly bound crossbridges contribute to thin filament activation in the heart, but the magnitude and the duration of the effects due to crossbridges are not well characterized. In this study, crossbridge attachment was altered in tetanized ferret papillary muscles and changes in the rate constant for the recovery of force (k (TR)) and unloaded shortening velocity (V (U)) were measured to track thin filament activation. k (TR) decreased as the time the muscles spent at low levels of crossbridge attachment (shortening deactivation) increased (0.02 s=17.9+/-2.3 s(-1), 0.32 s=3.3+/-0.4 s(-1); half-time=0.052 s; P<0.05). Furthermore, the deactivation was reversible and k (TR) recovered when muscles were allowed to regenerate force isometrically during the same tetanus. V (U) also decreased when the preceding load was lower (isometric load, V (U)=1.93+/-0.26 muscle lengths/s (ML/s); zero load, V (U)=0.93+/-0.14 ML/s, P<0.05) and as the length of time the muscle spent unloadedincreased (>60% decline after 0.3 s). In addition, V (U) recovered when the muscle was allowed to regenerate force isometrically. These results indicate that crossbridge attachment increases thin filament activation as reflected in measurements of V (U) and k (TR). This 'extra' activation by crossbridges appears to be a dynamic process that decays during unloaded shortening and redevelops during isometric contraction.
机译:细胞内钙和牢固结合的跨桥都有助于心脏中细丝的激活,但是由于跨桥作用的程度和持续时间尚未得到很好的表征。在这项研究中,跨桥附着在成群的雪貂乳头肌中发生了变化,并且测量了力恢复的速率常数(k(TR))和空载的起酥油速度(V(U))的变化,以追踪细丝的活化。 k(TR)随着肌肉在低水平跨桥附着(缩短失活)上花费的时间增加而降低(0.02 s = 17.9 +/- 2.3 s(-1),0.32 s = 3.3 +/- 0.4 s(-1) ;半衰期= 0.052 s; P <0.05)。此外,当允许肌肉在相同的破伤风中等距再生力时,失活是可逆的,k(TR)恢复。当前一个负荷较低时,V(U)也会降低(等距负荷,V(U)= 1.93 +/- 0.26肌肉长度/秒(ML / s);零负荷时,V(U)= 0.93 +/- 0.14 ML / s,P <0.05),并且随着肌肉空载时间的增加而增加(0.3 s后下降> 60%)。另外,当允许肌肉等距再生力时,V(U)恢复。这些结果表明,如V(U)和k(TR)的测量所反映的,跨桥连接增加了细丝激活。跨桥的这种“额外”激活似乎是一个动态过程,该过程在卸载缩短过程中衰减,而在等距收缩过程中重新发育。

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