Lolkema J S, Robillard G T
Department of Physical Chemistry, University of Groningen, The Netherlands.
Biochemistry. 1990 Oct 30;29(43):10120-5. doi: 10.1021/bi00495a016.
The original proposal of Saier stating that P-enolpyruvate-dependent mannitol phosphorylation is catalyzed by the monomeric form of the bacterial phosphotransferase enzyme IImtl, which would be the form predominantly existing in the phospholipid bilayer, whereas mannitol/mannitol-P exchange would depend on the transient formation of functional dimers, is refuted [Saier, M.H. (1980) J. Supramol. Struct. 14, 281-294]. The correct interpretation of the proportional relation between the rate of mannitol phosphorylation in the overall reaction and the enzyme concentration is that enzyme IImtl is dimeric under the conditions employed. Differences measured in the enzyme concentration dependency of the overall and exchange reactions were caused by different assay conditions. The dimer is favored over the monomer at high ionic strength and basic pH. Mg2+ ions bind specifically to enzyme IImtl, inducing dimerization. A complex formed by mixing inorganic phosphate, F-, and Mg2+ at sufficiently high concentrations inhibits enzyme IImtl, in part, by dissociation of the dimer. Enzyme IImtl was dimeric in 25 mM Tris, pH 7.6, and 5 mM Mg2+ over a large enzyme concentration range and under many different turnover conditions. The association/dissociation equilibrium was demonstrated in phosphate bufers, pH 6.3. The dimer was the most active form both in the overall and in the exchange reaction under the conditions assayed. The monomer was virtually inactive in mannitol/mannitol-P exchange but retained 25% of the activity in the overall reaction.
赛尔最初提出的观点认为,磷酸烯醇丙酮酸依赖性甘露醇磷酸化由细菌磷酸转移酶IImtl的单体形式催化,该单体形式主要存在于磷脂双层中,而甘露醇/甘露醇 - P交换则取决于功能性二聚体的瞬时形成,这一观点已被驳斥[赛尔,M.H.(1980年)《超分子结构杂志》14卷,281 - 294页]。对总反应中甘露醇磷酸化速率与酶浓度之间比例关系的正确解释是,在所用条件下酶IImtl是二聚体。总反应和交换反应在酶浓度依赖性方面测得的差异是由不同的测定条件引起的。在高离子强度和碱性pH条件下,二聚体比单体更受青睐。Mg2 +离子特异性结合到酶IImtl上,诱导二聚化。由高浓度的无机磷酸盐、F - 和Mg2 +混合形成的复合物部分通过二聚体的解离来抑制酶IImtl。在25 mM Tris,pH 7.6和5 mM Mg2 +条件下,在很大的酶浓度范围内以及许多不同的周转条件下,酶IImtl都是二聚体。在pH 6.3的磷酸盐缓冲液中证明了缔合/解离平衡。在所测定的条件下,二聚体在总反应和交换反应中都是最具活性的形式。单体在甘露醇/甘露醇 - P交换中几乎没有活性,但在总反应中保留了25%的活性。