Riera M, Fuster J F, Palacios L
Departamento de Bioquímica y Fisiología, Facultad de Biología, Universidad de Barcelona, Spain.
Am J Physiol. 1991 Apr;260(4 Pt 2):R798-803. doi: 10.1152/ajpregu.1991.260.4.R798.
The effects of two different degrees of experimentally induced anemia and the consequent high percentage of circulating immature erythrocytes on oxygen affinity (pH 7.5 and 41 degrees C), erythrocyte organic phosphates, and Hb fractions have been studied in quail. Blood reticulocytes reached percentages of 24 and 69-87% in the first and second experiments, respectively. Variations in the phosphate levels found during the anemic process were related to the amount of circulating reticulocytes. The erythrocyte [ATP] (brackets indicate concentration) and [ATP]/[Hb] molar ratio increased with the release of reticulocytes and returned to control levels as they matured. The erythrocyte [inositol pentakisphosphate (InsP5)] decreased significantly when circulating reticulocytes showed their highest values, whereas there was hardly any effect on the [InsP5]/[Hb] molar ratio, which changed only slightly. Hb-O2 affinity also exhibited no statistical changes associated with acute anemia. These latter findings indicate that InsP5, at physiological concentrations, is the primary modulator of quail Hb function; the observed rise in [ATP] has no additional influence on Hb-O2 affinity. It is suggested that InsP5 tends to maintain the blood oxygen affinity in both mature erythrocytes and reticulocytes. The main compensatory response at blood level is a rapid bulk reticulocyte release from medulla.
在鹌鹑身上研究了两种不同程度的实验性诱导贫血以及随之而来的循环中未成熟红细胞的高比例对氧亲和力(pH 7.5和41摄氏度)、红细胞有机磷酸盐和血红蛋白组分的影响。在第一次和第二次实验中,血液中网织红细胞的百分比分别达到了24%和69%-87%。贫血过程中发现的磷酸盐水平变化与循环中网织红细胞的数量有关。红细胞[ATP](方括号表示浓度)和[ATP]/[Hb]摩尔比随着网织红细胞的释放而增加,并在其成熟时恢复到对照水平。当循环中网织红细胞达到最高值时,红细胞[肌醇五磷酸(InsP5)]显著下降,而对[InsP5]/[Hb]摩尔比几乎没有影响,该比值仅略有变化。血红蛋白-氧气亲和力也未表现出与急性贫血相关的统计学变化。这些结果表明,在生理浓度下,InsP5是鹌鹑血红蛋白功能的主要调节因子;观察到的[ATP]升高对血红蛋白-氧气亲和力没有额外影响。有人提出,InsP5倾向于维持成熟红细胞和网织红细胞中的血液氧亲和力。血液水平的主要代偿反应是从骨髓中快速大量释放网织红细胞。