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含有多种血红蛋白的变温动物血液的氧平衡

Oxygen equilibria of ectotherm blood containing multiple hemoglobins.

作者信息

Maginniss L A, Song Y K, Reeves R B

出版信息

Respir Physiol. 1980 Dec;42(3):329-43. doi: 10.1016/0034-5687(80)90123-1.

Abstract

Complete isocapnic O2 equilibrium curves (O2EC's) and related blood-gas properties are reported for whole blood of the bullfrog (Rana catesbeiana) and the aquatic turtle (Pseudemys scripta) at temperatures ranging from 5 to 35 degrees C. P50's for bullfrog and turtle blood at physiological pH and 25 degrees C were 36.6 Torr (pH 7.83) and 19.3 Torr (pH 7.55), respectively. Elevation of blood temperature significantly reduced hemoglobin oxygen affinity in both species (delta H = -8.1 and -7.8 kcal/mol O2 for Rana and Pseudemys, respectively). Bullfrog and turtle oxygen equilibrium data revealed non-standard curve shapes when compared with the Severinghaus curve for human blood (1979); ectotherm O2EC's rose more steeply below P50 (less sigmoid) and were distinctly flattened (linear) above 50% saturation. The CO2-Bohr effect for bullfrog and turtle blood varied significantly as a function of saturation. In addition, both species exhibited non-linear Hill relationships (logS/1-s vs. log PO2). These results indicate that the oxygen binding properties of the multiple hemoglobin bloods of Rana and Pseudemys (demonstrated by isoelectric focusing) are more complex than those exhibited by normal human blood. As a consequence, these ectotherm blood oxygen data are not well characterized by the limited number of simple descriptive parameters (P50, Hill's n and delta log P50/delta pH) commonly used to delineate predominantly single hemoglobin systems.

摘要

报道了牛蛙(牛蛙)和水龟(伪彩龟)全血在5至35摄氏度温度范围内的完整等碳酸氧平衡曲线(O2EC)及相关血气特性。牛蛙和龟血在生理pH值和25摄氏度时的P50分别为36.6托(pH 7.83)和19.3托(pH 7.55)。两种动物的血液温度升高均显著降低了血红蛋白对氧的亲和力(牛蛙和伪彩龟的ΔH分别为-8.1和-7.8千卡/摩尔O2)。与人类血液的Severinghaus曲线(1979年)相比,牛蛙和龟的氧平衡数据显示出非标准曲线形状;变温动物的O2EC在P50以下上升更陡峭(更不呈S形),在饱和度高于50%时明显变平(呈线性)。牛蛙和龟血的CO2-Bohr效应随饱和度变化显著。此外,两种动物均表现出非线性希尔关系(logS/1-s与log PO2)。这些结果表明,牛蛙和伪彩龟多种血红蛋白血液的氧结合特性(通过等电聚焦证明)比正常人血液更为复杂。因此,这些变温动物的血氧数据无法用通常用于描述主要为单一血红蛋白系统的有限数量的简单描述参数(P50、希尔系数n和Δlog P50/ΔpH)很好地表征。

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