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Rat liver guanidinoacetate methyltransferase. Proximity of cysteine residues at positions 15, 90 and 219 as revealed by site-directed mutagenesis and chemical modification.

机译:大鼠肝脏胍基乙酸甲酯转移酶。通过定点诱变和化学修饰显示,第15、90和219位的半胱氨酸残基接近。

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摘要

Cys-90 of rat liver guanidinoacetate methyltransferase is a very reactive residue, and chemical modification of this residue results in a large decrease in activity [Fujioka, Konishi & Takata (1988) Biochemistry 27, 7658-7664]. To understand better the role of Cys-90 in catalysis, this residue was replaced with alanine by oligonucleotide-directed mutagenesis. The mutant is active and has kinetic constants similar to those of wild-type, indicating that Cys-90 is not involved in catalysis and substrate binding. The u.v.-absorption, fluorescence and c.d. spectra are also unchanged. Reaction of the mutant with an equimolar amount of 5,5'-dithiobis-(2-nitrobenzoic acid) or 2-nitro-5-thiocyanobenzoic acid results in an almost quantitative disulphide cross-linking between Cys-15 and Cys-21). The same treatment effects disulphide bond formation between Cys-15 and Cys-90 in wild type [Fujioka, Konishi & Takata (1988) Biochemistry 27, 7658-7664]. Since the mutant and wild-type enzymes appear to have similar secondary and tertiary structures, these results suggest that Cys-15, Cys-90 and Cys-219 of the methyltransferase occur spatially close together. The mutant cross-linked between Cys-15 and Cys-219 and the wild-type cross-linked between Cys-15 and Cys-90 show very similar spectroscopic properties. Although treatment of the mutant and wild-type enzymes with equimolar concentrations of 5,5'dithiobis-(2-nitrobenzoic acid) causes a large loss of enzyme activity in each case, kinetic analyses with the modified enzymes suggest that cross-linking of Cys-15 with Cys-90 or Cys-219 does not abolish activity and does not result in a large change in the Michaelis constants. Incubation of the mutant enzyme with excess 2-nitro-5-thiocyanobenzoic acid leads to modification of Cys-207 in addition to Cys-15 and Cys-219. Retention of considerable enzyme activity in the modified enzyme indicates that Cys-207 is also not an essential residue.
机译:大鼠肝脏胍基乙酸甲酯甲基转移酶的Cys-90是非常活泼的残基,并且该残基的化学修饰导致活性大大降低[Fujioka,Konishi&Takata(1988)Biochemistry 27,7658-7664]。为了更好地了解Cys-90在催化中的作用,通过寡核苷酸定向诱变将该残基替换为丙氨酸。该突变体具有活性,并具有与野生型相似的动力学常数,表明Cys-90不参与催化和底物结合。紫外吸收,荧光和c.d.光谱也不变。突变体与等摩尔量的5,5'-二硫代双-(2-硝基苯甲酸)或2-硝基-5-硫代氰基苯甲酸反应导致Cys-15和Cys-21之间几乎定量的二硫键交联。相同的处理作用在野生型的Cys-15和Cys-90之间形成二硫键[Fujioka,Konishi&Takata(1988)Biochemistry 27,7658-7664]。由于突变型和野生型酶似乎具有相似的二级和三级结构,因此这些结果表明甲基转移酶的Cys-15,Cys-90和Cys-219在空间上彼此靠近。在Cys-15和Cys-219之间交联的突变体以及在Cys-15和Cys-90之间交联的野生型表现出非常相似的光谱性质。尽管在每种情况下用等摩尔浓度的5,5'二硫代双-(2-硝基苯甲酸)处理突变型和野生型酶会导致酶活性大量损失,但是使用修饰酶进行的动力学分析表明,Cys的交联带有Cys-90或Cys-219的-15不会消除活性,不会导致Michaelis常数发生较大变化。除Cys-15和Cys-219外,突变酶与过量的2-硝基-5-硫氰基苯甲酸一起孵育还导致Cys-207的修饰。在修饰的酶中保留相当大的酶活性表明Cys-207也不是必需的残基。

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