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Site-directed mutagenesis of β-lactamase I. Single and double mutants of Glu-166 and Lys-73

机译:β-内酰胺酶的定点诱变I.Glu-166和Lys-73的单突变和双突变

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pTwo single mutants and the corresponding double mutant of beta-lactamase I from Bacillus cereus 569/H were constructed and their kinetics investigated. The mutants have Lys-73 replaced by arginine (K73R), or Glu-166 replaced by aspartic acid (E166D), or both (K73R + E166D). All four rate constants in the acyl-enzyme mechanism were determined for the E166D mutant by the methods described by Christensen, Martin & Waley [(1990) Biochem. J. 266, 853-861]. Both the rate constants for acylation and deacylation for the hydrolysis of benzylpenicillin were decreased about 2000-fold in this mutant. In the K73R mutant, and in the double mutant, the rate constants for acylation were decreased about 100-fold and 10,000-fold respectively. All three mutants also had lowered values for the rate constants for the formation and dissociation of the non-covalent enzyme-substrate complex. The specificities of the mutants did not differ greatly from those of wild-type beta-lactamase, but the hydrolysis of cephalosporin C by the K73R mutant gave ‘burst’ kinetics./p
机译:构造了两个来自蜡样芽孢杆菌569 / H的单突变体和相应的β-内酰胺酶I双突变体,并研究了它们的动力学。突变体的Lys-73被精氨酸(K73R)取代,或Glu-166被天冬氨酸(E166D)取代,或二者都被(K73R + E166D)取代。通过由Christensen,Martin& amp; M。等人描述的方法,对于E166D突变体,确定了酰基-酶机理中的所有四个速率常数。 Waley [(1990)Biochem。 J. 266,853-861]。在该突变体中,苄青霉素水解的酰化和脱酰的速率常数都降低了约2000倍。在K73R突变体和双重突变体中,酰化的速率常数分别降低了约100倍和10,000倍。对于非共价酶-底物复合物的形成和解离,所有三个突变体的速率常数值也都较低。突变体的特异性与野生型β-内酰胺酶没有太大区别,但是K73R突变体对头孢菌素C的水解具有“爆发”动力学。

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