Baez Mauricio, Rodríguez Patricio H, Babul Jorge, Guixé Victoria
Departamento de Biología, Facultad de Ciencias, Universidad de Chile, Casilla 653, Santiago, Chile.
Biochem J. 2003 Nov 15;376(Pt 1):277-83. doi: 10.1042/BJ20030795.
Modification of Escherichia coli phosphofructokinase-2 (Pfk-2) with pyrene maleimide (PM) results in a rapid inactivation of the enzyme. The loss of enzyme activity correlates with the incorporation of 2 mol of PM/mol of subunit and the concomitant dissociation of the dimeric enzyme. The two modified residues were identified as Cys-238 and Cys-295. In the presence of the negative allosteric effector, MgATP, Cys-238 was the only modified cysteine residue. Kinetic characterization of the Cys-238-labelled Pfk-2 indicates that the enzyme is fully active, with the kinetic constants ( K(m), kcat) being almost identical to the ones obtained for the native enzyme. The modified enzyme is a monomer in the absence of ligands and, like the native enzyme, behaves as a tetramer in the presence of the nucleotide. However, in the presence of fructose-6-phosphate (fru-6-P) and ATP(-4), the enzyme behaves as a dimer, suggesting that the monomers undergo re-association in the presence of the substrates and that the active species is a dimer. Modification of Pfk-2 with eosin-5-maleimide (EM) results in the labelling of Cys-295. This modified enzyme is inactive and is not able to bind to the allosteric effector, remaining as a dimer in its presence. Nonetheless, Cys-295-labelled Pfk-2 is able to bind to the substrate fru-6-P in an hyperbolic fashion with a K(d) value that is 6-fold higher than the one determined for the native enzyme. These are the first residues to be implicated in the activity and/or structure of the Pfk-2.
用芘马来酰亚胺(PM)修饰大肠杆菌磷酸果糖激酶-2(Pfk-2)会导致该酶迅速失活。酶活性的丧失与每摩尔亚基掺入2摩尔PM以及二聚体酶的伴随解离相关。两个被修饰的残基被鉴定为Cys-238和Cys-295。在负变构效应物MgATP存在下,Cys-238是唯一被修饰的半胱氨酸残基。对Cys-238标记的Pfk-2的动力学表征表明该酶完全有活性,其动力学常数(K(m),kcat)与天然酶获得的几乎相同。修饰后的酶在没有配体时是单体,并且与天然酶一样,在核苷酸存在下表现为四聚体。然而,在6-磷酸果糖(fru-6-P)和ATP(-4)存在下,该酶表现为二聚体,这表明单体在底物存在下会重新缔合,并且活性形式是二聚体。用曙红-5-马来酰亚胺(EM)修饰Pfk-2会导致Cys-295被标记。这种修饰后的酶无活性,并且不能结合变构效应物,在其存在下仍为二聚体。尽管如此,Cys-295标记的Pfk-2能够以双曲线方式结合底物fru-6-P,其K(d)值比天然酶测定的值高6倍。这些是首次涉及Pfk-2活性和/或结构的残基。