Baccanari D P, Stone D, Kuyper L
J Biol Chem. 1981 Feb 25;256(4):1738-47.
The two isozymes of dihydrofolate reductase (Forms 1 and 2) from, a Trimethoprim-resistant strain of Escherichia coli (RT500) were separated and purified to homogeneity using a simple procedure based on differential elution from a Methotrexate affinity column. The complete amino acid sequence of the Form 2 isozyme was determined, and it differs from that of Form 1 in only one position. Residue 28 is arginine in Form 2 and leucine in Form 1. However, the isozymes differ greatly in their binding and kinetic properties. Equilibrium dialysis studies showed the Trimethoprim dissociation constants of Form 2 are about 50-fold greater than those of Form 1 in both the binary complex and the ternary complex with NADPH. Similarly, the Methotrexate dissociation constant of Form 2 is about 10-fold greater than that of Form 1. The two isozymes also differ in their turnover numbers at pH 7 (Form 1 is 10-fold more active) and inhibition by divalent cations. Form 1 is extremely sensitive to BaCl2 (50% inhibition at 0.5 mM), whereas Form 2 is much less sensitive (50% inhibition at 60 mM). In the presence of 10 mM BaCl2, Form 1 has the functional characteristics of Form 2. Its turnover number is decreased, its Trimethoprim Ki is increased, and the shape of its pH-activity profile is identical with that of Form 2. The x-ray structures and amino acid sequences of several bacterial dihydrofolate reductases indicate that Asp-27 is important in inhibitor binding and may be involved in catalysis. The present data provide kinetic evidence for this hypothesis, and it is proposed that almost all the unusual characteristics of Form 2 are the direct result of a charge interaction between Arg-28 and Asp-27. A similar interaction between Ba2+ and the Asp-27 of Form 1 can result in an enzyme complex that is kinetically similar to Form 2.
利用一种基于从甲氨蝶呤亲和柱上进行差异洗脱的简单方法,将来自耐甲氧苄啶的大肠杆菌(RT500)菌株的二氢叶酸还原酶的两种同工酶(形式1和形式2)分离并纯化至同质。确定了形式2同工酶的完整氨基酸序列,它与形式1的序列仅在一个位置上有所不同。形式2中的第28位残基是精氨酸,而形式1中是亮氨酸。然而,这两种同工酶在其结合和动力学特性上有很大差异。平衡透析研究表明,在与NADPH形成的二元复合物和三元复合物中,形式2的甲氧苄啶解离常数比形式1的大约大50倍。同样,形式2的甲氨蝶呤解离常数比形式1的大约大10倍。这两种同工酶在pH 7时的周转数(形式1的活性高10倍)以及二价阳离子的抑制作用方面也有所不同。形式1对BaCl2极其敏感(在0.5 mM时50%抑制),而形式2的敏感性则低得多(在60 mM时50%抑制)。在10 mM BaCl2存在下,形式1具有形式2的功能特性。其周转数降低,其甲氧苄啶Ki增加,并且其pH -活性曲线的形状与形式2相同。几种细菌二氢叶酸还原酶的X射线结构和氨基酸序列表明,Asp - 27在抑制剂结合中很重要,并且可能参与催化作用。目前的数据为这一假设提供了动力学证据,并且有人提出形式2几乎所有不寻常的特性都是Arg - 28和Asp - 27之间电荷相互作用的直接结果。Ba2+与形式1的Asp - 27之间的类似相互作用可导致一种在动力学上与形式2相似的酶复合物。