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马血红蛋白对二氧化碳的结合作用。

The binding of carbon dioxide by horse haemoglobin.

作者信息

Kilmartin J V, Rossi-Bernardi L

出版信息

Biochem J. 1971 Aug;124(1):31-45. doi: 10.1042/bj1240031.

Abstract
  1. Three modified horse haemoglobins have been prepared: (i) alpha(c) (2)beta(c) (2), in which both the alpha-amino groups of the alpha- and beta-chains have reacted with cyanate, (ii) alpha(c) (2)beta(2), in which the alpha-amino groups of the alpha-chains have reacted with cyanate, and (iii) alpha(2)beta(c) (2), in which the two alpha-amino groups of the beta-chain have reacted with cyanate. 2. The values of n (the Hill constant) for alpha(c) (2)beta(c) (2), alpha(2)beta(c) (2) and alpha(c) (2)beta(2) were (respectively) 2.5, 2.0 and 2.6, indicating the presence of co-operative interactions between the haem groups for all derivatives. 3. In the alkaline pH range (about pH8.0) all the derivatives show the same charge as normal haemoglobin whereas in the acid pH range (about pH6.0) alpha(c) (2)beta(c) (2) differs by four protonic charges and alpha(c) (2)beta(2), alpha(2)beta(c) (2) by two protonic charges from normal haemoglobin, indicating that the expected number of ionizing groups have been removed. 4. alpha(c) (2)beta(2) and alpha(c) (2)beta(c) (2) show a 25% decrease in the alkaline Bohr effect, in contrast with alpha(2)beta(c) (2), which has the same Bohr effect as normal haemoglobin. 5. The deoxy form of alpha(c) (2)beta(c) (2) does not bind more CO(2) than the oxy form of alpha(c) (2)beta(c) (2), whereas alpha(c) (2)beta(2) and alpha(2)beta(c) (2) show intermediate binding. 6. The results reported confirm the hypothesis that, under physiological conditions, haemoglobin binds CO(2) through the four terminal alpha-amino groups and that the two terminal alpha-amino groups of alpha-chains are involved in the Bohr effect.
摘要
  1. 制备了三种修饰的马血红蛋白:(i)α(c)(2)β(c)(2),其中α链和β链的α-氨基均与氰酸盐反应;(ii)α(c)(2)β(2),其中α链的α-氨基与氰酸盐反应;(iii)α(2)β(c)(2),其中β链的两个α-氨基与氰酸盐反应。2. α(c)(2)β(c)(2)、α(2)β(c)(2)和α(c)(2)β(2)的n值(希尔常数)分别为2.5、2.0和2.6,表明所有衍生物的血红素基团之间存在协同相互作用。3. 在碱性pH范围(约pH8.0)内,所有衍生物与正常血红蛋白具有相同电荷,而在酸性pH范围(约pH6.0)内,α(c)(2)β(c)(2)与正常血红蛋白相比有四个质子电荷差异,α(c)(2)β(2)、α(2)β(c)(2)与正常血红蛋白相比有两个质子电荷差异,这表明预期数量的可电离基团已被去除。4. α(c)(2)β(2)和α(c)(2)β(c)(2)的碱性玻尔效应降低了25%,而α(2)β(c)(2)的玻尔效应与正常血红蛋白相同。5. α(c)(2)β(c)(2)的脱氧形式结合的CO(2)不比其氧合形式多,而α(c)(2)β(2)和α(2)β(c)(2)表现出中等程度的结合。6. 所报道的结果证实了以下假设:在生理条件下,血红蛋白通过四个末端α-氨基结合CO(2),并且α链的两个末端α-氨基参与玻尔效应。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84f0/1177110/143234e91f33/biochemj00648-0051-a.jpg

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