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温度对人和地松鼠红细胞中磷代谢产物、pH值及Mg2+影响的比较。

A comparison of effect of temperature on phosphorus metabolites, pH and Mg2+ in human and ground squirrel red cells.

作者信息

Marjanovic M, Gregory C, Ghosh P, Willis J S, Dawson M J

机构信息

Department of Physiology and Biophysics, University of Illinois, Urbana.

出版信息

J Physiol. 1993 Oct;470:559-74. doi: 10.1113/jphysiol.1993.sp019875.

Abstract
  1. 31P NMR spectra were obtained at temperatures ranging from 2 to 30 degrees C from freshly drawn human (cold-sensitive) and ground squirrel (cold-tolerant) red cells. The concentration of ATP was also determined by luciferin-luciferase assay over the same temperature range. 2. The concentration of ATP as determined by NMR or by the luciferin-luciferase assay did not change with temperature in either species. The absolute concentration of ATP in human cells determined by NMR was not significantly different from the total ATP determined enzymatically. 3. The concentration of 2,3-diphosphoglycerate was higher and that of pyridine nucleotides lower in human than in ground squirrel red cells. This species difference was independent of temperature. 4. Intracellular pH, as determined from the positions of the NMR peaks of 2- and 3-phosphates of diphosphoglycerate, became more alkaline as the temperature was lowered. 5. Free intracellular magnesium, determined from the difference in the positions of the peaks for alpha- and beta-phosphorus of ATP, increased in the ground squirrel red cells and decreased in the human red cells with cooling from 30 to 2 degrees C. Total magnesium, as determined by atomic emission spectroscopy, did not change with temperature in red cells of either species. 6. The intensities of all phosphorus metabolite signals from the ground squirrel cells increased with decreasing temperature, while those from the human cells were unaffected. Since chemical shift anisotropy in the presence of magnesium is a powerful spin-lattice relaxation mechanism for phosphates, this is additional evidence for the temperature dependence of free magnesium concentration in the ground squirrel cells. 7. We conclude that there is no difference in phosphorus metabolites or intracellular pH which could account for the differential cold sensitivity in human and ground squirrel red cells. We suggest that, in the cold-tolerant red cells from the ground squirrel, magnesium is released from binding sites as the temperature is lowered. The change in free intracellular Mg2+ may account at least in part for the unusually low temperature sensitivity of the Na(+)-K+ pump in the red cells of this species.
摘要
  1. 在2至30摄氏度的温度范围内,从新鲜抽取的人类(冷敏感)和地松鼠(耐寒)红细胞中获取了31P NMR光谱。同时,在相同温度范围内通过荧光素 - 荧光素酶测定法测定了ATP的浓度。2. 通过NMR或荧光素 - 荧光素酶测定法测定的ATP浓度在两种物种中均不随温度变化。通过NMR测定的人类细胞中ATP的绝对浓度与酶法测定的总ATP浓度无显著差异。3. 人类红细胞中2,3 - 二磷酸甘油酸的浓度高于地松鼠红细胞,而吡啶核苷酸的浓度则低于地松鼠红细胞。这种物种差异与温度无关。4. 根据二磷酸甘油酸2 - 磷酸和3 - 磷酸的NMR峰位置确定的细胞内pH值,随着温度降低而变得更碱性。5. 从ATP的α - 和β - 磷峰位置差异确定的细胞内游离镁,在30摄氏度冷却至2摄氏度时,地松鼠红细胞中增加,人类红细胞中减少。通过原子发射光谱法测定的总镁在两种物种的红细胞中均不随温度变化。6. 地松鼠细胞中所有磷代谢物信号的强度随温度降低而增加,而人类细胞中的信号强度不受影响。由于在镁存在下化学位移各向异性是磷酸盐强大的自旋 - 晶格弛豫机制,这是地松鼠细胞中游离镁浓度对温度依赖性的额外证据。7. 我们得出结论,磷代谢物或细胞内pH值没有差异可以解释人类和地松鼠红细胞对寒冷敏感性的差异。我们认为,在地松鼠的耐寒红细胞中,随着温度降低,镁从结合位点释放。细胞内游离Mg2 + 的变化可能至少部分解释了该物种红细胞中Na(+) - K + 泵异常低的温度敏感性。

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