...
首页> 外文期刊>The biochemical journal >Catalytic consequences of experimental evolution: catalysis by a ‘third-generation’ evolvant of the second beta-galactosidase of Escherichia coli, ebgabcde, and by ebgabcd, a ‘second-generation’ evolvant containing two supposedly ‘kinetically silent’ mutations
【24h】

Catalytic consequences of experimental evolution: catalysis by a ‘third-generation’ evolvant of the second beta-galactosidase of Escherichia coli, ebgabcde, and by ebgabcd, a ‘second-generation’ evolvant containing two supposedly ‘kinetically silent’ mutations

机译:实验进化的催化后果:大肠杆菌第二个半乳糖苷酶ebgabcde的“第三代”进化论者和包含两个据称“运动沉默”突变的“第二代”进化论者ebgabcd催化

获取原文
           

摘要

pThe kinetics of hydrolysis of a series of synthetic substrates by two experimentally evolved forms (‘evolvants’), ebgabcd and ebgabcde, of the second beta-galactosidase of Escherichia coli have been measured. The ebgabcd enzyme differs from the wild-type (ebgo) enzyme by Asp92--&Asn (a) and Trp977--&Cys (b) changes in the large subunit, as well as two changes hitherto considered to have no kinetic effect, Ser979--&Gly in the large subunit (c) and Glu122--&Gly in the small subunit (d). The enzyme ebgabcde contains in addition a Glu93--&Lys change in the large subunit (e). Comparison of ebgabcd with ebgab [Elliott, K, Sinnott, Smith, Bommuswamy, Guo, Hall and Zhang (1992) Biochem. J. 282, 155-164] indicates that the c and d changes in fact accelerate the hydrolysis of the glycosyl-enzyme intermediate by a factor of 2.5, and also decrease the charge on the aglycone oxygen atom at the first transition state; the charge on the glycone, however, is unaltered [see K, Konstantinidis, Sinnott and Hall (1993) Biochem. J. 291, 15-17]. The e mutation causes a fall in the degalactosylation rate of about a factor of 3, and its occurrence only together with c and d mutations [Hall, Betts and Wootton (1989) Genetics 123, 635-648] suggests that degalactosylation of a hypothetical ebgabe enzyme would be so slow that the enzyme would have no biological advantage over the ancestral ebgab. The transfer products from galactosyl-ebgabcd and galactosyl-ebgabcde to high concentrations to glucose have been measured; the predominant product is allolactose, but significant quantities of lactose are also formed; however, at apparent kinetic saturation of the galactosyl-enzyme, hydrolysis rather than transfer is the preponderant pathway. A knowledge of the rates of enzyme-catalysed exchange of 18O from [1-18O]galactose to water permits the construction of the free-energy profiles for hydrolysis of lactose by begabcd and ebgabcde. As with the other evolvants, changes in the profile away from the rate-determining transition state are essentially random, and there is no correlation between the changes in the free energies of intermediates and of their flanking transition states. We consider the aggregate of our kinetic data on the ebg system to be telling experimental support for the theoretical objections of Pettersson [Pettersson (1992) Eur. J. Biochem. 206, 289-295 and previous papers] to the Albery-Knowles theory of the evolution of enzyme kinetic activity./p
机译:>已测量了大肠杆菌第二种β-半乳糖苷酶的两种实验演变形式(“进化产物”)ebgabcd和ebgabcde水解一系列合成底物的动力学。 ebgabcd酶与野生型(ebgo)酶的区别在于Asp92-> Asn(a)和Trp977-> Cys(b)大亚基的变化以及迄今认为没有动力学的两个变化因此,大亚基(c)中的Ser979-> Gly和小亚基(d)中的Glu122-> Gly起作用。 ebgabcde酶在大亚基(e)中还含有Glu93-> Lys变化。 ebgabcd与ebgab的比较[Elliott,K,Sinnott,Smith,Bommuswamy,Guo,Hall and Zhang(1992)Biochem。 [J. 282,155-164]指出c和d的变化实际上使糖基酶中间物的水解加速了2.5倍,并且还降低了在第一个过渡态时糖苷配基氧原子上的电荷;然而,糖苷上的电荷是不变的[见K,Konstantinidis,Sinnott和Hall(1993)Biochem。 [J. 291,15-17]。 e突变导致半乳糖基化率下降约3倍,并且仅与c和d突变一起出现[Hall,Betts and Wootton(1989)Genetics 123,635-648]表明,假想的依贝加的半乳糖基化作用这种酶太慢了,以至于该酶没有比祖先ebgab具有生物学优势。已测量了半乳糖基-依贝加糖和半乳糖基-依贝加糖向高浓度葡萄糖的转移产物;主要产物是异乳糖,但也形成大量乳糖。然而,在半乳糖基酶的明显动力学饱和下,水解而不是转移是主要途径。酶催化18 O从[1-18O]半乳糖转化为水的速率的知识可以构建begabcd和ebgabcde水解乳糖的自由能谱。与其他进化产物一样,远离决定速率的过渡态的分布的变化基本上是随机的,并且中间体自由能及其侧接过渡态的自由能变化之间没有相关性。我们认为在ebg系统上获得的动力学数据的总和表明了对Pettersson [Pettersson(1992)Eur。 J.生物化学。 206,289-295和以前的论文]的酶动力学活性的演变的阿尔伯里-诺尔斯理论。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号