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棒状链霉菌去乙酰氧头孢菌素C合酶中R306位点氨基酸改变的完整文库证明了其在环扩展活性中的结构作用。

A complete library of amino acid alterations at R306 in Streptomyces clavuligerus deacetoxycephalosporin C synthase demonstrates its structural role in the ring-expansion activity.

作者信息

Sim Goo Kian, Song Chua Chun, Sim Tiow-Suan

机构信息

Department of Microbiology, Yong Loo Lin School of Medicine, Singapore 117597.

出版信息

Proteins. 2008 Feb 15;70(3):739-47. doi: 10.1002/prot.21549.

Abstract

In a previous study, the conserved arginine residue at position 306 of Streptomyces clavuligerus deacetoxycephalsoporin C synthase (scDAOCS), when mutated to leucine, resulted in 191% increase in converting ampicillin to its expanded cephalosporin moiety compared with that of the wild-type enzyme. However, the role of this residue in eliciting the improved enzymatic activity is not well understood. In this study, probing the molecular basis of amino acid substitutions at position 306 has underscored its importance for engineering various improvements in the ring expansion activity. Structural modeling using SwissPdbViewer revealed that R306 is surrounded by a hydrophobic cleft formed by residues Y184, L186, W297, I298, and V303. Hence, the improved activity achieved by the R306L mutation was probably because of better hydrophobic packing in this region. To evaluate the role of amino acids at position 306 of scDAOCS and its influence on the molecular status of the enzyme at this locality, alteration to 18 other amino acids was done by site-directed mutagenesis. The effects of each substitution on the enzyme activity were determined by bioassay using penicillin substrates: ampicillin, penicillin G, phenethicillin, and carbenicillin. Results obtained showed a drastic reduction in enzyme activity when R306 was replaced with charged or polar residues, thus emphasizing the importance of hydrophobic packing around this site. The bioassay results also illustrated that apart from leucine, substitutions to nonpolar residues, isoleucine and methionine, were able to improve the ampicillin conversion activity of scDAOCS by 168 and 113% of the wild-type enzyme activity, respectively. Similar trend of effects from each mutation was also observed for penicillin G, phenethicillin, and carbenicillin conversions. The enhanced enzyme activities were supported by spectrophotometric assay indicating that all these mutants have lower K(m) values (R306L: 1.09 mM; R306I: 2.64 mM; R306M: 5.68 mM) than the wild-type enzyme (8.33 mM), resulting in improvement in the enzyme's substrate binding affinity. Hence, this mutational study of amino acids situated at 306 of scDAOCS has provided a better understanding of the significance of specific amino acid residues at this position which can improve its ring-expansion activity when given a plethora of beta-lactam substrates to generate corresponding, possibly new, cephalosporins.

摘要

在之前的一项研究中,棒状链霉菌去乙酰氧基头孢菌素C合酶(scDAOCS)第306位的保守精氨酸残基突变为亮氨酸后,与野生型酶相比,将氨苄青霉素转化为其扩展头孢菌素部分的能力提高了191%。然而,该残基在引发酶活性提高方面的作用尚未完全明确。在本研究中,对第306位氨基酸取代的分子基础进行探究,突出了其在工程化提高环扩展活性方面的重要性。使用SwissPdbViewer进行的结构建模显示,R306被由Y184、L186、W297、I298和V303残基形成的疏水裂缝所包围。因此,R306L突变实现的活性提高可能是由于该区域更好的疏水堆积。为了评估scDAOCS第306位氨基酸的作用及其对该局部区域酶分子状态的影响,通过定点诱变将其替换为其他18种氨基酸。使用青霉素底物氨苄青霉素、青霉素G、苯氧乙基青霉素和羧苄青霉素通过生物测定法确定每种取代对酶活性的影响。结果显示,当R306被带电荷或极性残基取代时,酶活性急剧降低,从而强调了该位点周围疏水堆积的重要性。生物测定结果还表明,除了亮氨酸外,替换为非极性残基异亮氨酸和甲硫氨酸能够分别将scDAOCS的氨苄青霉素转化活性提高至野生型酶活性的168%和113%。对于青霉素G、苯氧乙基青霉素和羧苄青霉素的转化,也观察到了每种突变产生的类似效应趋势。分光光度测定法支持了酶活性的增强,表明所有这些突变体的K(m)值(R306L:1.09 mM;R306I:2.64 mM;R306M:5.68 mM)均低于野生型酶(8.33 mM),从而提高了酶与底物的结合亲和力。因此,对scDAOCS第306位氨基酸的这种突变研究,更好地理解了该位置特定氨基酸残基的重要性,当给予大量β-内酰胺底物以生成相应的、可能是新的头孢菌素时,这些残基可提高其环扩展活性。

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