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马脾脱铁铁蛋白的催化活性。初步动力学研究及化学修饰的影响。

The catalytic activity of horse spleen apoferritin. Preliminary kinetic studies and the effect of chemical modification.

作者信息

Bryce C F, Crichton R R

出版信息

Biochem J. 1973 Jun;133(2):301-9. doi: 10.1042/bj1330301.

Abstract
  1. Horse spleen apoferritin catalyses the oxidation of Fe(2+) to Fe(3+) with molecular O(2) as electron acceptor under conditions where a number of other proteins have no such effect. The product is similar to ferritin by a number of criteria. 2. The progress curve is hyperbolic and the increase in initial velocity is linear with increasing apoferritin concentration. With respect to Fe(2+) the reaction follows Michaelis-Menten kinetics. The pH-dependence of the reaction was determined between pH4.3 and 6.0. 3. Modification of both tryptophan residues/apoferritin subunit with 2-nitrophenylsulphenyl chloride does not affect either k(cat.) or K(m) for the oxidation. Neither does the guanidination of seven out of nine lysine residues/subunit, the modification of nine out of ten arginine residues/subunit with cyclohexanedione, or the nitration of one out of five tyrosine residues/subunit with tetranitromethane. 4. The carboxymethylation of two out of three cysteine residues/subunit and of one out of six histidine residues/subunit can be achieved with iodoacetic acid. This carboxymethylated apoferritin is completely inactive in Fe(2+) oxidation. 5. Apoferritin does not take up Fe(3+). It appears from these results that Fe(2+) is the form in which iron is taken up by ferritin in a reaction where the protein acts as an enzyme which traps the product in the interior of the protein shell.
摘要
  1. 在许多其他蛋白质无此作用的条件下,马脾脱铁铁蛋白催化Fe(2+)以分子O(2)作为电子受体氧化为Fe(3+)。从多个标准来看,产物与铁蛋白相似。2. 反应进程曲线呈双曲线,初始速度的增加与脱铁铁蛋白浓度的增加呈线性关系。就Fe(2+)而言,反应遵循米氏动力学。在pH4.3至6.0之间测定了反应的pH依赖性。3. 用2-硝基苯磺酰氯修饰两个色氨酸残基/脱铁铁蛋白亚基,对氧化反应的k(cat.)或K(m)均无影响。九个赖氨酸残基/亚基中的七个胍基化、十个精氨酸残基/亚基中的九个用环己二酮修饰、或五个酪氨酸残基/亚基中的一个用四硝基甲烷硝化,也均无影响。4. 用碘乙酸可实现三个半胱氨酸残基/亚基中的两个以及六个组氨酸残基/亚基中的一个的羧甲基化。这种羧甲基化的脱铁铁蛋白在Fe(2+)氧化中完全无活性。5. 脱铁铁蛋白不摄取Fe(3+)。从这些结果看来,Fe(2+)是铁蛋白摄取铁的形式,在该反应中蛋白质充当一种酶,将产物捕获在蛋白质外壳内部。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbaa/1177699/694427832296/biochemj00606-0105-a.jpg

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