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Temperature dependence of active tension in mammalian (rabbit psoas) muscle fibres: effect of inorganic phosphate

机译:哺乳动物(兔子腰大肌)肌肉纤维中主动张力的温度依赖性:无机磷酸盐的作用

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class="enumerated" style="list-style-type:decimal">The effect of added inorganic phosphate (Pi, range 3–25 mm) on active tension was examined at a range of temperatures (5–30 °C) in chemically skinned (0.5 % Brij) rabbit psoas muscle fibres. Three types of experiments were carried out.In one type of experiment, a muscle fibre was maximally activated at low temperature (5 °C) and its tension change was recorded during stepwise heating to high temperature in ≈60 s. As found in previous studies, the tension increased with temperature and the normalised tension-(reciprocal) temperature relation was sigmoidal, with a half-maximal tension at 8 °C. In the presence of 25 mm added Pi, the temperature for half-maximal tension of the normalised curve was ≈5 °C higher than in the control. The difference in the slope was small.In a second type of experiment, the tension increment during a large temperature jump (from 5 to 30 °C) was examined during an active contraction. The relative increase of active tension on heating was significantly higher in the presence of 25 mm added Pi (30/5 °C tension ratio of 6–7) than in the control with no added Pi (tension ratio of ≈3).In a third type of experiment, the effect on the maximal Ca2+-activated tension of different levels of added Pi (3–25 mm) (and Pi mop adequate to reduce contaminating Pi to micromolar levels) was examined at 5, 10, 20 and 30 °C. The tension was depressed with increased [Pi] in a concentration-dependent manner at all temperatures, and the data could be fitted with a hyperbolic relation. The calculated maximal tension depression in excess [Pi] was ≈65 % of the control at 5–10 °C, in contrast to a maximal depression of 40 % at 20 °C and 30 % at 30 °C.These experiments indicate that the active tension depression induced by Pi in psoas fibres is temperature sensitive, the depression becoming less marked at high temperatures. A reduced Pi-induced tension depression is qualitatively predicted by a simplified actomyosin ATPase cycle where a pre-phosphate release, force-generation step is enhanced by temperature.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在一定温度范围(5–30°C)下,对化学皮肤(0.5%Brij)的兔大肌肌肉纤维中添加的无机磷酸盐(Pi,范围为3–25 mm)对主动张力的影响进行了检查。进行了三种类型的实验。 在一种类型的实验中,在低温(5°C)下最大程度地激活了肌肉纤维,并记录了在逐步加热至高温下(约60℃)的张力变化s。如先前的研究发现,张力随温度升高而增加,并且归一化的张力-(倒数)温度关系呈S型,在8°C时有一半的最大张力。在添加25 mm Pi的情况下,归一化曲线的半最大张力温度比对照组高≈5°C。斜率的差异很小。 在第二种类型的实验中,在主动收缩过程中检查了大温度跳跃(从5到30°C)期间的张力增量。添加25 mm Pi(30/5°C拉伸比为6-7)时,加热时活性张力的相对增加明显高于未添加Pi的对照组(拉伸比为≈3)。 在第三种类型的实验中,不同水平的添加Pi(3–25 mm)(和Pi拖把足以减少污染)对最大Ca 2 + 活化张力的影响在5、10、20和30°C下检查Pi(微摩尔水平)。在所有温度下,张力都以浓度依赖的方式随着π的增加而降低,并且数据可以拟合为双曲线关系。在5-10°C时,计算出的最大Pi值超出最大Pi的最大压降约为对照组的65%,而在20°C时最大压降为40%,在30°C时最大压降为30%。 <这些实验表明,Pi在腰大肌纤维中引起的主动张力降低是温度敏感的,在高温下该降低变得不明显。通过简化的放线菌蛋白酶ATPase循环定性地预测了Pi诱导的紧张情绪降低,其中温度升高可增强磷酸盐释放前的力生成步骤。

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