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鸡血红蛋白的D组分与胚胎期的帚尾袋貂(褐大袋鼠)的血红蛋白在脱氧时会发生自我缔合:对氧结合的影响。

Component D of chicken hemoglobin and the hemoglobin of the embryonic Tammar wallaby (Macropus eugenii) self-associate upon deoxygenation: Effect on oxygen binding.

作者信息

Rana Mitra S, Knapp James E, Holland Robert A B, Riggs Austen F

机构信息

Section of Neurobiology, School of Biologicalu Sciences, University of Texas, Austin, Texas 78712-0252, USA.

出版信息

Proteins. 2008 Feb 1;70(2):553-61. doi: 10.1002/prot.21793.

DOI:10.1002/prot.21793
PMID:17972287
Abstract

Extensive measurements of oxygen binding by some vertebrate hemoglobins (Hbs) have suggested an unusually high degree of cooperativity with reported Hill coefficients, n(H), greater than 4.0. We have reexamined this possibility of "super-cooperativity" with chicken Hb components A (alpha(A) (2)beta(2)) and D (alpha(D) (2)beta(2)). Prior studies have shown that component D but not A self-associates to dimers of tetramers upon deoxygenation. This self-association is reflected in the oxygen equilibrium of Hb D which shows a maximal n(H), greater than 4.0 at approximately 4 mM heme concentration. In contrast, component A has maximal n(H) value below 3. The value of the maximal n(H) for Hb D increases linearly with the fraction of octamer present in the deoxy Hb. We anticipate that deoxygenation-dependent self-association will be shown to be a general property of Hb D from birds and reptiles. Neither oxygen equilibria nor sedimentation measurements show any evidence that components A and D interact to form a complex when deoxygenated. We have also reexamined the oxygen equilibria of Hbs of an embryonic marsupial, the wallaby. The equilibria in red cells have been reported to have Hill coefficients as high as 5-6. Although our oxygen equilibrium measurements of solutions of unfractionated wallaby Hb at a concentration of approximately 1 mM show no n(H) values greater than approximately 3.0, sedimentation velocity measurements provide clear evidence for deoxygenation-dependent self-association.

摘要

对一些脊椎动物血红蛋白(Hb)的氧结合进行的广泛测量表明,其协同性程度异常高,报道的希尔系数n(H)大于4.0。我们用鸡血红蛋白组分A(α(A)₂β₂)和D(α(D)₂β₂)重新研究了这种“超协同性”的可能性。先前的研究表明,脱氧时组分D而非组分A会自缔合形成四聚体的二聚体。这种自缔合反映在Hb D的氧平衡中,在约4 mM血红素浓度下,其显示出最大n(H)大于4.0。相比之下,组分A的最大n(H)值低于3。Hb D的最大n(H)值随脱氧Hb中八聚体的比例呈线性增加。我们预计,依赖脱氧的自缔合将被证明是鸟类和爬行动物Hb D的普遍特性。无论是氧平衡还是沉降测量,都没有证据表明组分A和D在脱氧时相互作用形成复合物。我们还重新研究了有袋类胚胎动物袋鼠的Hb的氧平衡。据报道,红细胞中的平衡具有高达5 - 6的希尔系数。尽管我们对浓度约为1 mM的未分级袋鼠Hb溶液进行的氧平衡测量未显示n(H)值大于约3.0,但沉降速度测量为依赖脱氧的自缔合提供了明确证据。

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