Velichko I S, Mikalahti K, Kasho V N, Dudarenkov V Y, Hyytiä T, Goldman A, Cooperman B S, Lahti R, Baykov A A
A. N. Belozersky Institute of Physico-Chemical Biology and School of Chemistry, Moscow State University, Moscow 119899, Russia.
Biochemistry. 1998 Jan 13;37(2):734-40. doi: 10.1021/bi9714823.
Escherichia coli inorganic pyrophosphatase is a tight hexamer of identical subunits. Replacement of both His136 and His140 by Gln in the subunit interface results in an enzyme which is trimeric up to 26 mg/mL enzyme concentration in the presence of Mg2+, allowing direct measurements of Mg2+ binding to trimer by equilibrium dialysis. The results of such measurements, together with the results of activity measurements as a function of [Mg2+] and pH, indicate that Mg2+ binds more weakly to one of the three sites per monomer than it does to the equivalent site in the hexamer, suggesting this site to be located in the trimer:trimer interface. The otherwise unobtainable hexameric variant enzyme readily forms in the presence of magnesium phosphate, the product of the pyrophosphatase reaction, but rapidly dissociates on dilution into medium lacking magnesium phosphate or pyrophosphate. The kcat values are similar for the variant trimer and hexamer, but Km values are 3 orders of magnitude lower for the hexamer. Thus, while stabilizing hexamer, the two His residues, per se, are not absolutely required for active-site structure rearrangement upon hexamer formation. The reciprocal effect of hexamerization and product binding to the active site is explained by destabilization of alpha-helix A, contributing both to the active site and the subunit interface.
大肠杆菌无机焦磷酸酶是由相同亚基紧密结合形成的六聚体。在亚基界面处将His136和His140都替换为Gln后,在Mg2+存在的情况下,得到的酶在酶浓度高达26 mg/mL时为三聚体,这使得可以通过平衡透析直接测量Mg2+与三聚体的结合。这些测量结果,以及作为[Mg2+]和pH函数的活性测量结果表明,Mg2+与每个单体的三个位点之一的结合比与六聚体中相应位点的结合更弱,这表明该位点位于三聚体:三聚体界面。原本无法获得的六聚体变体酶在焦磷酸酶反应产物磷酸镁存在的情况下很容易形成,但在稀释到缺乏磷酸镁或焦磷酸的培养基中时会迅速解离。变体三聚体和六聚体的kcat值相似,但六聚体的Km值低3个数量级。因此,虽然稳定了六聚体,但这两个His残基本身对于六聚体形成时活性位点结构的重排并不是绝对必需的。六聚化和产物与活性位点结合的相互作用可以通过α-螺旋A的不稳定来解释,α-螺旋A对活性位点和亚基界面都有贡献。