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首页> 外文期刊>American Journal of Physiology >Decrease in the red cell cofactor 2,3-diphosphoglycerate increases hemoglobin oxygen affinity in the hibernating brown bear Ursus arctos
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Decrease in the red cell cofactor 2,3-diphosphoglycerate increases hemoglobin oxygen affinity in the hibernating brown bear Ursus arctos

机译:红细胞辅因子2,3-二磷酸甘油酸酯的减少增加了冬眠棕熊熊熊中的血红蛋白氧亲和力

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During winter hibernation, brown bears (Ursus arctos) reduce basal O_2 consumption rate to -25% compared with the active state, while body temperature decreases moderately (to ~30°C), suggesting a temperature-independent component in their metabolic depression. To establish whether changes in O_2 consumption during hibernation correlate with changes in blood O_2 affinity, we took blood samples from the same six individuals of hibernating and nonhibernating free-ranging brown bears during winter and summer, respectively. A single hemoglobin (Hb) component was detected in all samples, indicating no switch in Hb synthesis. O_2 binding curves measured on red blood cell lysates at 30°C and 37°C showed a less temperature-sensitive O_2 affinity than in other vertebrates. Furthermore, hemolysates from hibernating bears consistently showed lower cooperativity and higher O_2 affinity than their summer counterparts, regardless of the temperature. We found that this increase in O_2 affinity was associated with a significant decrease in the red cell Hb-cofactor 2,3-diphosphoglycerate (DPG) during hibernation to approximately half of the summer value. Experiments performed on purified Hb, to which DPG had been added to match summer and winter levels, confirmed that the low DPG content was the cause of the left shift in the Hb-O_2 equilibrium curve during hibernation. Levels of plasma lactate indicated that glycolysis is not upregulated during hibernation and that metabolism is essentially aerobic. Calculations show that the increase in Hb-O_2 affinity and decrease in cooperativity resulting from decreased red cell DPG may be crucial in maintaining a fairly constant tissue oxygen tension during hibernation in vivo.metabolic suppression; body temperature; oxygen binding curves; heat of oxygenation; hibernation
机译:在冬季休眠期间,棕熊(Ursus arctos)与活动状态相比,将基础O_2的消耗率降低至-25%,而体温则适度降低(至〜30°C),这表明它们的代谢抑制作用与温度无关。为了确定冬眠期间O_2消耗的变化是否与血液O_2亲和力的变化相关,我们分别从冬季和夏季分别从相同的六个冬眠和非冬眠棕熊个体中采集了血样。在所有样品中均检测到单个血红蛋白(Hb)成分,表明Hb合成过程中没有切换。与其他脊椎动物相比,在30°C和37°C的红细胞裂解液上测得的O_2结合曲线显示出较低的温度敏感性O_2亲和力。此外,无论温度如何,与冬夏相比,冬眠熊的溶血液始终显示出较低的协同性和较高的O_2亲和力。我们发现,O_2亲和力的这种增加与冬眠期间红细胞Hb-辅因子2,3-二磷酸甘油酸酯(DPG)的显着降低有关,约为夏季值的一半。对添加了DPG以匹配夏季和冬季水平的纯Hb进行的实验证实,低DPG含量是冬眠期间Hb-O_2平衡曲线向左移动的原因。血浆乳酸水平表明,冬眠期间糖酵解没有上调,并且代谢基本上是有氧的。计算表明,红细胞DPG降低导致Hb-O_2亲和力增加和协同性降低可能对于维持体内冬眠期间相当恒定的组织氧张力至关重要。体温;氧结合曲线;氧化热冬眠

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