Coletta M, Angeletti M, De Sanctis G, Cerroni L, Giardina B, Amiconi G, Ascenzi P
Department of Molecular, Cellular and Animal Biology, University of Camerino, Italy.
Eur J Biochem. 1996 Jan 15;235(1-2):49-53. doi: 10.1111/j.1432-1033.1996.00049.x.
The kinetics of azide and fluroide binding to various monomeric and tetrameric ferric hemoproteins (sperm whale Mb, isolated alpha and beta chains of human Hb reacted with p-chloromercuribenzoate, dromeday, ox and human Hb) has been investigated (at pH 6.5 and 20 degrees C over a large range (20 microM to 2 M) of ligand concentration. It has been observed that the pseuo-first-order rate constant for azide binding to the hemoproteins investigated does not increase linearly with ligand concentration, but tends to level off toward an asymptomatic concentration-independent value typical for each hemoprotein. This behavior, which has been detected only by an investigation covering an unusually large range of ligand concentrations appears to be independent of the ionic strength, and it underlies the existence of a rate-limiting step in the dynamic pathway of azide binding to ferric hemoproteins, which is detectable whenever the observed pseudo- first-order rate constant becomes faster than a given value characteristic of the specific hemoprotein. Such a behavior is not observed in the case of fluroide binding probably because the pesudo- first-order rate constant for this ligand is much slower and never attains a value faster than that of the rate-limiting step. In general terms, this feature should involve a conformational equilibrium between at least two forms (possibly related to the interaction of H2O with distal histidine and its exchange with the bulk solvent) which modulates the access of the anionic ligand into the heme pocket and its reaction with the ferric iron.
已研究了叠氮化物和氟化物与各种单体和四聚体铁血红素蛋白(抹香鲸肌红蛋白、与对氯汞苯甲酸反应的人血红蛋白分离的α和β链、单峰驼血红蛋白、牛血红蛋白和人血红蛋白)的结合动力学(在pH 6.5和20℃下,配体浓度范围较大,从20μM至2M)。已观察到,所研究的血红素蛋白与叠氮化物结合的伪一级速率常数并不随配体浓度呈线性增加,而是趋向于达到一个与浓度无关的渐近值,该值对每种血红素蛋白而言是典型的。这种行为仅在涵盖异常大范围配体浓度的研究中被检测到,似乎与离子强度无关,并且它是叠氮化物与铁血红素蛋白结合的动态途径中存在限速步骤的基础,只要观察到的伪一级速率常数比特定血红素蛋白的给定特征值快,就可以检测到该限速步骤。在氟化物结合的情况下未观察到这种行为,可能是因为该配体的伪一级速率常数要慢得多,且从未达到比限速步骤更快的值。一般而言,此特征应涉及至少两种形式之间的构象平衡(可能与H2O与远端组氨酸的相互作用及其与大量溶剂的交换有关),该平衡调节阴离子配体进入血红素口袋及其与铁离子的反应。