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脱氧血红蛋白亚基的聚集。

Aggregation of deoxyhemoglobin subunits.

作者信息

McGovern P, Reisberg P, Olson J S

出版信息

J Biol Chem. 1976 Dec 25;251(24):7871-9.

PMID:12181
Abstract

The formation of deoxyhemoglobin was examined by measuring the heme spectral change that accompanies the aggregation of isolated alpha and beta chains. At low hemeconcentrations (less than 10(-5) M), tetramer formation can be described by two consecutive, second order reactions representing the aggregation of monomers followed by the association of alphabeta dimers. At neutral pH, the rates of monomer and dimer aggregation are roughly the same, approximately 5 X 10(5) M(-1) X(-1) at 20 degrees. Raising or lowering the pH results in a uniform decrease of both aggregation rates due presumably to repulsion of positively charged subunits at acid pH and repulsion of negatively charged subunits at alkaline pH. Addition of p-hydroxymercuribenzoate to alpha chains lowers the rate of monomer aggregation whereas addition of mercurials to the beta subunits appears to lower both the rate of monomer and the rate of dimer aggregation. At high heme concentrations (greater than 10(-5) M) or in the presence of organic phosphates, the rate of chain aggregation becomes limited, in part, by the slow dissociation of beta chain tetramers. In the case of inositol hexaphosphate, the rate of hemoglobin formation exhibits a bell-shaped dependence on phosphate concentration. When intermediate concentrations of inositol hexaphosphate (approximately 10(-4 M) are preincubated with beta subunits, a slow first order time course is observed and exhibits a half-time of about 8 min. As more inositol hexaphosphate is added, the chain aggregation reaction begins to occur more rapidly. Eventually at about 10(-2) M inositol hexaphospate, the time course becomes almost identical to that observed in the absence of phosphates. The increase in the velocity of the chain aggregation reaction at high phosphate concentrations suggests strongly that inositol hexaphosphate binds to beta monomers and, if added in sufficiently large amounts, promotes beta4 dissociation. A quantitative analysis of these results showed that the affinity of beta monomers for inositol hexaphosphate is the same as that of alphabeta dimers. Only when tetramers are formed, either alpha2beta2 or beta4, is a marked increase in affinity for inositol hexaphosphate observed.

摘要

通过测量伴随分离的α链和β链聚集的血红素光谱变化,研究了脱氧血红蛋白的形成。在低血红素浓度(小于10⁻⁵ M)下,四聚体的形成可由两个连续的二级反应描述,这两个反应分别代表单体的聚集以及αβ二聚体的缔合。在中性pH值下,单体和二聚体聚集的速率大致相同,在20℃时约为5×10⁵ M⁻¹×⁻¹。升高或降低pH值会导致两种聚集速率均均匀下降,这可能是由于酸性pH值下带正电亚基的排斥以及碱性pH值下带负电亚基的排斥。向α链中添加对羟基汞苯甲酸会降低单体聚集的速率,而向β亚基中添加汞化合物似乎会降低单体聚集速率和二聚体聚集速率。在高血红素浓度(大于10⁻⁵ M)或存在有机磷酸盐的情况下,链聚集的速率部分受到β链四聚体缓慢解离的限制。就肌醇六磷酸而言,血红蛋白形成的速率对磷酸盐浓度呈现钟形依赖性。当中等浓度的肌醇六磷酸(约10⁻⁴ M)与β亚基预孵育时,观察到一个缓慢的一级时间进程,其半衰期约为8分钟。随着添加更多的肌醇六磷酸,链聚集反应开始更快地发生。最终,在约10⁻² M肌醇六磷酸时,时间进程几乎与无磷酸盐时观察到的相同。高磷酸盐浓度下链聚集反应速度的增加强烈表明,肌醇六磷酸与β单体结合,并且如果添加足够大量,会促进β4解离。对这些结果的定量分析表明,β单体对肌醇六磷酸的亲和力与αβ二聚体相同。只有当形成四聚体时,无论是α2β2还是β4,才观察到对肌醇六磷酸的亲和力显著增加。

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