Schoene C, Bennett S P, Howarth M
University of Oxford, Oxford, United Kingdom.
Sekisui Diagnostics UK Ltd., Maidstone, Kent, United Kingdom.
Methods Enzymol. 2016;580:149-67. doi: 10.1016/bs.mie.2016.05.004. Epub 2016 Jun 16.
Enzymes often have marginal stability, with unfolding typically leading to irreversible denaturation. This sensitivity is a major barrier, both for de novo enzyme development and for expanding enzyme impact beyond the laboratory. Seeking an approach to enhance resilience to denaturation that could be applied to a range of different enzymes, we developed SpyRing cyclization. SpyRings contain genetically encoded SpyTag (13 amino acids) on the N-terminus and SpyCatcher (12kDa) on the C-terminus of the enzyme, so that the Spy partners spontaneously react together through an irreversible isopeptide bond. SpyRing cyclization gave major increases in thermal resilience, including on a model for enzyme evolution, β-lactamase, and an industrially important enzyme in agriculture and nutrition, phytase. We outline the SpyRing rationale, including comparison of SpyRing cyclization to other cyclization strategies. The cloning strategy is presented for the simple insertion of enzyme genes for recombinant expression. We discuss structure-based approaches to select suitable enzyme cyclization targets. Approaches to evaluate the cyclization reaction and its effect on enzyme resilience are described. We also highlight the use of differential scanning calorimetry to understand how SpyRing cyclization promotes enzyme refolding. Efficiently searching sequence space will continue to be important for enzyme improvement, but the SpyRing platform may be a valuable rational adjunct for conferring resilience.
酶通常具有一定的稳定性,其解折叠通常会导致不可逆的变性。这种敏感性是从头开发酶以及将酶的影响扩展到实验室之外的主要障碍。为了寻求一种可应用于一系列不同酶的提高抗变性能力的方法,我们开发了SpyRing环化技术。SpyRing在酶的N端含有基因编码的SpyTag(13个氨基酸),在C端含有SpyCatcher(12kDa),这样Spy伙伴通过不可逆的异肽键自发地一起反应。SpyRing环化极大地提高了热稳定性,包括在酶进化模型β-内酰胺酶以及农业和营养领域一种重要的工业酶植酸酶上。我们概述了SpyRing的原理,包括将SpyRing环化与其他环化策略进行比较。介绍了用于简单插入酶基因进行重组表达的克隆策略。我们讨论了基于结构的方法来选择合适的酶环化靶点。描述了评估环化反应及其对酶稳定性影响的方法。我们还强调了使用差示扫描量热法来了解SpyRing环化如何促进酶的重折叠。高效搜索序列空间对于酶的改进仍然很重要,但SpyRing平台可能是赋予稳定性的一种有价值的合理辅助手段。