Immobilized Biocatalyst Engineering: High throughput enzyme immobilization for the integration of biocatalyst improvement strategies
Keywords: protein engineering, enzyme immobilization, High-throughput immobilization, Immobilized Biocatalyst Engineering, Integrated screening, Bacillus subtilis lipase A
Abstract
The increasing use of sustainable manufacturing technologies in the industry presents a constant challenge for the development of suitable biocatalysts. Traditionally, improved biocatalysts are developed either using protein engineering (PE) or enzyme immobilization (EI). However, these approaches are usually not simultaneously applied. In this work, we designed and validated an enzyme improvement platform, Immobilized Biocatalyst Engineering (IBE), which simultaneously integrates PE and EI, with a unique combination of improvement through amino acid substitutions and attachment to a support material, allowing to select variants that would not be found through single or subsequent PE and EI improvement strategies. Our results show that there is a significant difference on the best performing variants identified through IBE, when compared to those that could be identified as soluble enzymes and then immobilized, especially when evaluating variants with low enzyme as soluble enzymes and high activity when immobilized. IBE allows evaluating thousands of variants in a short time through an integrated screening, and selection can be made with more information, resulting in the detection of highly stable and active heterogeneous biocatalysts. This novel approach can translate into a higher probability of finding suitable biocatalysts for highly demanding processes.
Más información
Título de la Revista: | INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES |
Volumen: | 170 |
Editorial: | Elsevier |
Fecha de publicación: | 2021 |
Página de inicio: | 61 |
Página final: | 70 |
Idioma: | Ingles |
Notas: | Wos Scopus |