PROTEO, the Québec Network for Research on Protein Structure, Function and Engineering, Université Laval, Laval, Québec, Canada.
PLoS One. 2012;7(12):e52283. doi: 10.1371/journal.pone.0052283. Epub 2012 Dec 21.
Enzyme engineering has been facilitated by recombination of close homologues, followed by functional screening. In one such effort, chimeras of two class-A β-lactamases - TEM-1 and PSE-4 - were created according to structure-guided protein recombination and selected for their capacity to promote bacterial proliferation in the presence of ampicillin (Voigt et al., Nat. Struct. Biol. 2002 9:553). To provide a more detailed assessment of the effects of protein recombination on the structure and function of the resulting chimeric enzymes, we characterized a series of functional TEM-1/PSE-4 chimeras possessing between 17 and 92 substitutions relative to TEM-1 β-lactamase. Circular dichroism and thermal scanning fluorimetry revealed that the chimeras were generally well folded. Despite harbouring important sequence variation relative to either of the two 'parental' β-lactamases, the chimeric β-lactamases displayed substrate recognition spectra and reactivity similar to their most closely-related parent. To gain further insight into the changes induced by chimerization, the chimera with 17 substitutions was investigated by NMR spin relaxation. While high order was conserved on the ps-ns timescale, a hallmark of class A β-lactamases, evidence of additional slow motions on the µs-ms timescale was extracted from model-free calculations. This is consistent with the greater number of resonances that could not be assigned in this chimera relative to the parental β-lactamases, and is consistent with this well-folded and functional chimeric β-lactamase displaying increased slow time-scale motions.
酶工程通过近亲重组和功能筛选得到了促进。在这样的努力中,根据结构导向的蛋白质重组,创建了两种 A 类β-内酰胺酶 TEM-1 和 PSE-4 的嵌合体,并选择了它们在氨苄青霉素存在下促进细菌增殖的能力(Voigt 等人,Nat.Struct.Biol.20029:553)。为了更详细地评估蛋白质重组对所得嵌合酶结构和功能的影响,我们对一系列具有相对于 TEM-1β-内酰胺酶 17 至 92 个取代的功能性 TEM-1/PSE-4 嵌合体进行了表征。圆二色性和热扫描荧光法表明,嵌合体通常折叠良好。尽管相对于两种“亲本”β-内酰胺酶之一存在重要的序列变异,但嵌合β-内酰胺酶显示出与最接近的亲本相似的底物识别谱和反应性。为了更深入地了解嵌合化引起的变化,通过 NMR 自旋弛豫研究了具有 17 个取代的嵌合体。虽然在 ps-ns 时间尺度上保持了高秩序,这是 A 类β-内酰胺酶的标志,但从无模型计算中提取了在 µs-ms 时间尺度上存在额外的慢运动的证据。这与在这个嵌合体中不能相对于亲本β-内酰胺酶分配的更多共振是一致的,并且与这个折叠良好且功能齐全的嵌合β-内酰胺酶显示出增加的慢时间尺度运动是一致的。