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在钙瞬变下降阶段,对活动肌肉的拉伸会使钙与激活位点的结合产生双相变化。

Stretch of active muscle during the declining phase of the calcium transient produces biphasic changes in calcium binding to the activating sites.

作者信息

Gordon A M, Ridgway E B

机构信息

Department of Physiology and Biophysics, University of Washington, Seattle 19195.

出版信息

J Gen Physiol. 1990 Nov;96(5):1013-35. doi: 10.1085/jgp.96.5.1013.

Abstract

In voltage-clamped barnacle single muscle fibers, muscle shortening during the declining phase of the calcium transient increases myoplasmic calcium. This extra calcium is probably released from the activating sites by a change in affinity when cross-bridges break (Gordon, A. M., and E. B. Ridgway, 1987. J. Gen. Physiol. 90:321-340). Stretching the muscle at similar times causes a more complex response, a rapid increase in intracellular calcium followed by a transient decrease. The amplitudes of both phases increase with the rate and amplitude of stretch. The rapid increase, however, appears only when the muscle is stretched more than approximately 0.4%. This is above the length change that produces the breakpoint in the force record during a ramp stretch. This positive phase in response to large stretches is similar to that seen on equivalent shortening at the same point in the contraction. For stretches at different times during the calcium transient, the peak amplitude of the positive phase has a time course that is delayed relative to the calcium transient, while the peak decrease during the negative phase has an earlier time course that is more similar to the calcium transient. The amplitudes of both phases increase with increasing strength of stimulation and consequent force. When the initial muscle the active force. A large decrease in length (which drops the active force to zero) decreases the extra calcium seen on a subsequent restretch. After such a shortening step, the extra calcium on stretch recovers (50 ms half time) toward the control level with the same time course as the redeveloped force. Conversely, stretching an active fiber decreases the extra calcium on a subsequent shortening step that is imposed shortly afterward. Enhanced calcium binding due to increased length alone cannot explain our data. We hypothesize that the calcium affinity of the activating sites increases with cross-bridge attachment and further with cross-bridge strain. This accounts for the biphasic response to stretch as follows: cross-bridges detached by stretch first decrease calcium affinity, then upon reattachment increase calcium affinity due to the strained configuration brought on by the stretch. The experiments suggest that cross-bridge attachment and strain can modify calcium binding to the activating sites in intact muscle.

摘要

在电压钳制的藤壶单根肌纤维中,钙瞬变下降阶段的肌肉缩短会增加肌浆钙。当横桥断裂时,这种额外的钙可能是通过亲和力的变化从激活位点释放出来的(戈登,A.M.,和E.B.里奇韦,1987年。《普通生理学杂志》90:321 - 340)。在相似时间拉伸肌肉会引发更复杂的反应,细胞内钙迅速增加,随后短暂下降。两个阶段的幅度都随拉伸速率和幅度增加。然而,快速增加仅在肌肉拉伸超过约0.4%时出现。这高于在斜坡拉伸期间力记录中产生断点的长度变化。对大拉伸的这种正相类似于在收缩相同点处等效缩短时看到的情况。对于钙瞬变期间不同时间的拉伸,正相的峰值幅度具有相对于钙瞬变延迟的时间进程,而负相期间的峰值下降具有更早的时间进程,更类似于钙瞬变。两个阶段的幅度都随刺激强度增加和随之产生的力增加而增加。当初始肌肉施加较大的长度减小(这会使主动力降至零)时,会减少随后再拉伸时看到的额外钙。在这样的缩短步骤之后,拉伸时的额外钙以与重新发展的力相同的时间进程恢复(半衰期50毫秒)至对照水平。相反,拉伸一根活跃纤维会减少随后不久施加的缩短步骤时的额外钙。仅因长度增加而增强的钙结合无法解释我们的数据。我们假设激活位点的钙亲和力随横桥附着增加,并且随横桥应变进一步增加。这如下解释了对拉伸的双相反应:被拉伸分离的横桥首先降低钙亲和力,然后在重新附着时由于拉伸带来的应变构型而增加钙亲和力。实验表明,横桥附着和应变可以改变完整肌肉中钙与激活位点的结合。

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