首页> 外文会议>8th European Symposium Life Sciences Research in Space and 23rd Annual International Gravitational Physiology Meeting Jun 2-7, 2002 Stockholm, Sweden >ARTIFICIAL GRAVITY AND FUNCTIONAL PLASTICITY OF NERVE SYSTEM. L-~(14)C-GLUTAMATE UPTAKE BY NERVE TERMINALS FROM RAT CEREBELLUM AND CEREBRAL HEMISPHERES UNDER HYPERGRAVITY STRESS
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ARTIFICIAL GRAVITY AND FUNCTIONAL PLASTICITY OF NERVE SYSTEM. L-~(14)C-GLUTAMATE UPTAKE BY NERVE TERMINALS FROM RAT CEREBELLUM AND CEREBRAL HEMISPHERES UNDER HYPERGRAVITY STRESS

机译:神经系统的人工重力和功能可塑性。超重力胁迫下大鼠小脑和半球摄取L- 〜(14)C-谷氨酸

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We have investigated the effects of altered gravity on the kinetic parameters of glutamate transport activity. We observed no differences in Km values for cerebellum and cerebral hemisphere nerve terminals (synaptosomes) between control rats- 18,2+-7,6 μM (cerebellum), 10,7 +-2,5 μM (cerebral hemispheres) and animals exposed to hypergravity- 23,3+-6,9 μM (cerebellum), 6,7+-1,5 μM (cerebral hemispheres). The similarity of this parameter for the two studied groups of animals showed that affinity of glutamate transporter to substrate in cerebellum and cerebral hemispheres was not sensitive to hypergravity stress. The maximal velocity of L-[~(14)C]-glutamate uptake (Vmax) reduced for cerebellum synaptosomes from 9,6+-3,9 nmol/min/mg of protein in control group to 7,4+-2,0 nmol/min/mg of protein in animals, exposed to hypergravity stress. For cerebral hemisphere synaptosomes the maximal velocity significantly decreased from 12,5+-3,2 nmol/min/mg of protein to 5,6+-0,9 nmol/min/mg of protein, respectively.
机译:我们已经研究了重力改变对谷氨酸转运活性动力学参数的影响。我们观察到对照大鼠之间小脑和大脑半球神经末梢(突触小体)的Km值无差异-18,2 + -7,6μM(小脑),10,7 + -2,5μM(脑半球)和暴露的动物到超重力-23,3 + -6,9μM(小脑),6,7 + -1,5μM(脑半球)。该参数对两组动物的相似性表明,谷氨酸转运蛋白对小脑和大脑半球底物的亲和力对超重力压力不敏感。小脑突触体的L- [〜(14)C]-谷氨酸摄取的最大速度(Vmax)从对照组的9,6 + -3,9 nmol / min / mg的蛋白质降低到7,4 + -2,动物中0 nmol / min / mg的蛋白质,暴露于超重力压力下。对于脑半球突触体,最大速度分别从蛋白质的12,5 + -3,2 nmol / min / mg显着降低至5,6 + -0,9 nmol / min / mg蛋白质。

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