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Mechanisms of Immediate Temperature Compensation: Experiments with Brain Synaptosomes from Rat and Ground Squirrel

机译:立即温度补偿的机制:大鼠和地松鼠脑突触体的实验

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Glucose conversion by brain synaptosomes can be regarded as a special case of intrinsic kinetic properties of the enzyme substrate system. Temperature modulation of apparent K_m for this process can be described with our kinetic model. Using experimental data and the kinetic model, the minimal Km value for glucose conversion in ground squirrel synaptosomes was found at the lower temperature (6.5°C), much lower than that for the rat (16.6°C). The inversion temperatures (T_(min)) closely coincided with the lowest body temperatures from which the unassisted recovery from hypothermia was demonstrated in both species. This study indicated that thermal modulation of enzyme affinities may have an adaptive role in endotherms that is linked to their tolerance to hypothermia.
机译:脑突触体的葡萄糖转化可被认为是酶底物系统的内在动力学性质的特殊情况。对于该过程的明显K_M的温度调制可以用我们的动力学模型描述。使用实验数据和动力学模型,在较低温度(6.5℃)下发现地面鼠突触突触体的葡萄糖转化的最小km值,远低于大鼠(16.6℃)。在两种物种中,反转温度(T_(MIN))与最低的体温密切相关,其中在体温下对低温的过热回收的最低体温。该研究表明,酶亲热的热调节可能在吸热中具有适应性作用,其与其对体温过低的耐受性相关。

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