Jurgensen S R, Harrison J H
J Biol Chem. 1982 Jan 10;257(1):569-74.
Inactivation of porcine heart mitochondrial malate dehydrogenase (L-malate: NAD+ oxidoreductase, EC 1.1.1.37) by selective modification of an active center histidine residue with the reagent iodoacetamide has been further investigated to examine the existence of and the enzymatic activity of a hybrid (half)-modified dimer. The loss of enzymatic activity during iodo(1-14C) acetamide modification is linear with 14C incorporation. Enzyme was modified to various extents and the reaction was quenched. Microzonal electrophoresis was performed to separate native dimeric enzyme, hybrid-modified enzyme, and doubly modified enzyme. The distribution of each species was quantitated by scanning densitometry. The distribution generated throughout the time course of inactivation indicates that both subunits are modified independently and at the same rate. It is apparent that the hybrid-modified dimer contributes one-half of the enzymatic activity of a native dimer in the standard assay. Kinetic studies were performed and the results indicate that there is no apparent change in kinetic parameters between a subunit of the native dimer and the active subunit in the hybrid-modified dimer. Dissociation and reassociation of a mixture of native enzyme and doubly-iodoacetamide-modified enzyme indicates that there is no preferential association of a modified subunit with another modified subunit, or of a native subunit with another native subunit, but rather, association is random with respect to native and iodoacetamide-modified subunits.
用碘乙酰胺试剂对猪心脏线粒体苹果酸脱氢酶(L-苹果酸:NAD⁺氧化还原酶,EC 1.1.1.37)的活性中心组氨酸残基进行选择性修饰,使该酶失活,这一过程已得到进一步研究,以检验杂合(半)修饰二聚体的存在及其酶活性。在碘(¹⁴C)乙酰胺修饰过程中酶活性的丧失与¹⁴C掺入呈线性关系。酶被修饰到不同程度,然后终止反应。进行微区电泳以分离天然二聚体酶、杂合修饰酶和双重修饰酶。通过扫描密度计对每种物质的分布进行定量。整个失活过程中产生的分布表明两个亚基是独立且以相同速率被修饰的。很明显,在标准测定中,杂合修饰二聚体的酶活性是天然二聚体的一半。进行了动力学研究,结果表明天然二聚体的一个亚基与杂合修饰二聚体中的活性亚基之间的动力学参数没有明显变化。天然酶和双重碘乙酰胺修饰酶混合物的解离和重新结合表明,修饰亚基与另一个修饰亚基之间,或天然亚基与另一个天然亚基之间没有优先结合,而是天然亚基和碘乙酰胺修饰亚基之间的结合是随机的。