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温度对青蛙机械去膜肌纤维收缩激活和等长力产生的影响。

Influence of temperature upon contractile activation and isometric force production in mechanically skinned muscle fibers of the frog.

作者信息

Godt R E, Lindley B D

出版信息

J Gen Physiol. 1982 Aug;80(2):279-97. doi: 10.1085/jgp.80.2.279.

Abstract

Increasing temperature (4-22 degrees C) increases the Ca2+ concentration required for activation of mechanically skinned frog muscle fibers. The pCa required for 50% maximal force (pCa50) was inversely proportional to absolute temperature. Assuming that relative force is directly related to fractional occupancy of the Ca2+-binding sites on troponin that regulate force, the shift was consistent with a Gibbs free energy change of binding (delta G) of about -7.8 kcal/mol. This is close to the delta G for Ca2+ binding to the calcium-specific sites on troponin C reported by others. Decreasing Mg2+ from 1 mM to 60 microM shifts the force-pCa curves at either 4 or 22 degrees C to higher pCa, but the shift of pCa50 with temperature over this range (0.4 log units) was the same at low and high Mg2+. Maximal force increased with temperature for the entire range 4-22 degrees C with a Q10 of 1.41, and over the restricted range 4-15 degrees C with a Q10 of 1.20. From the dual effects of temperature on Ca2+ activation and maximal force, one would expect that force would respond differently to temperature change at high or low Ca2+. At high Ca2+, a temperature increase will lead to an increased force. However, at low to intermediate Ca2+ levels (below the intersection of the force-pCa curves for the initial and final temperatures), steady state force should decrease with increasing temperature. The inverse responses should occur with a decrease in temperature. These responses are observed when temperature is changed by rapid solution exchange.

摘要

温度升高(4 - 22摄氏度)会增加激活机械去皮肤青蛙肌肉纤维所需的Ca2+浓度。产生50%最大力所需的pCa(pCa50)与绝对温度成反比。假设相对力与调节力的肌钙蛋白上Ca2+结合位点的占有率直接相关,这种变化与结合的吉布斯自由能变化(ΔG)约为 -7.8千卡/摩尔一致。这与其他人报道的Ca2+与肌钙蛋白C上钙特异性位点结合的ΔG接近。将Mg2+从1 mM降至60 μM会使4摄氏度或22摄氏度下的力 - pCa曲线向更高的pCa值移动,但在此范围内(0.4个对数单位)pCa50随温度的变化在低Mg2+和高Mg2+时是相同的。在4 - 22摄氏度的整个范围内,最大力随温度升高,Q10为1.41;在4 - 15摄氏度的受限范围内,Q10为1.20。从温度对Ca2+激活和最大力的双重影响来看,人们会预期在高Ca2+或低Ca2+时力对温度变化的反应会不同。在高Ca2+时,温度升高会导致力增加。然而,在低至中等Ca2+水平(低于初始和最终温度的力 - pCa曲线的交点),稳态力应随温度升高而降低。温度降低时应出现相反的反应。当通过快速溶液交换改变温度时会观察到这些反应。

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