Caparco Adam A, Bommarius Bettina R, Ducrot Laurine, Champion Julie A, Vergne-Vaxelaire Carine, Bommarius Andreas S
School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia, USA.
Department of Chemical Engineering, Northeastern University, Boston, Massachusetts, USA.
Protein Sci. 2025 Jan;34(1):e5248. doi: 10.1002/pro.5248.
Enzyme stability can be measured in a number of ways, including melting temperature, activity retention, and size analysis. However, these measurements are often conducted in an idealized storage buffer and not in the relevant enzymatic reaction media. Particularly for reactions that occur in alkaline, volatile, and high ionic strength media, typical analyses using differential scanning calorimetry, light scattering, and sodium dodecyl-sulfate polyacrylamide gel electrophoresis are not satisfactory to track the stability of these enzymes. In this work, we monitor the stability of engineered and native dehydrogenases that require a high amount of ammonia for their reaction to occur. We demonstrate the benefits of analyzing these enzymes in their reaction buffer, uncovering trends that were not observable in the typical phosphate storage buffer. This work provides a framework for analyzing the stability of many other enzymes whose reaction media is not suitable for traditional techniques. We introduce several strategies for measuring the melting temperature, oligomeric state, and activity of these enzymes in their reaction media. Further, we have identified opportunities for integration of computational tools into this workflow to engineer enzymes more effectively for solvent tolerance and improved stability.
酶的稳定性可以通过多种方式来衡量,包括熔解温度、活性保留率和大小分析。然而,这些测量通常是在理想化的储存缓冲液中进行,而非在相关的酶促反应介质中。特别是对于在碱性、挥发性和高离子强度介质中发生的反应,使用差示扫描量热法、光散射和十二烷基硫酸钠聚丙烯酰胺凝胶电泳进行的典型分析,对于追踪这些酶的稳定性并不令人满意。在这项工作中,我们监测了工程化和天然脱氢酶的稳定性,这些酶的反应需要大量氨的存在。我们展示了在反应缓冲液中分析这些酶的好处,揭示了在典型的磷酸盐储存缓冲液中无法观察到的趋势。这项工作为分析许多其他酶的稳定性提供了一个框架,这些酶的反应介质不适用于传统技术。我们介绍了几种在反应介质中测量这些酶的熔解温度、寡聚状态和活性的策略。此外,我们已经确定了将计算工具整合到这个工作流程中的机会,以便更有效地设计对溶剂耐受性和稳定性更高的酶。