Enhancing the Hydrolytic Activity of a Lipase towards Larger Triglycerides through Lid Domain Engineering

Author:

Fernandez-Lopez Laura1ORCID,Roda Sergi2ORCID,Robles-Martín Ana23ORCID,Muñoz-Tafalla Rubén23ORCID,Almendral David1ORCID,Ferrer Manuel1ORCID,Guallar Víctor24ORCID

Affiliation:

1. Instituto de Catalisis y Petroleoquimica (ICP), CSIC, 28049 Madrid, Spain

2. Department of Life Sciences, Barcelona Supercomputing Center (BSC), 08034 Barcelona, Spain

3. PhD Programme, Faculty of Pharmacy and Food Science, Universitat de Barcelona (UB), 08007 Barcelona, Spain

4. Institution for Research and Advanced Studies (ICREA), 08010 Barcelona, Spain

Abstract

Lipases have valuable potential for industrial use, particularly those mostly active against water-insoluble substrates, such as triglycerides composed of long-carbon chain fatty acids. However, in most cases, engineered variants often need to be constructed to achieve optimal performance for such substrates. Protein engineering techniques have been reported as strategies for improving lipase characteristics by introducing specific mutations in the cap domain of esterases or in the lid domain of lipases or through lid domain swapping. Here, we improved the lipase activity of a lipase (WP_075743487.1, or LipMRD) retrieved from the Marine Metagenomics MarRef Database and assigned to the Actinoalloteichus genus. The improvement was achieved through site-directed mutagenesis and by substituting its lid domain (FRGTEITQIKDWLTDA) with that of Rhizopus delemar lipase (previously R. oryzae; UniProt accession number, I1BGQ3) (FRGTNSFRSAITDIVF). The results demonstrated that the redesigned mutants gain activity against bulkier triglycerides, such as glyceryl tridecanoate and tridodecanoate, olive oil, coconut oil, and palm oil. Residue W89 (LipMRD numbering) appears to be key to the increase in lipase activity, an increase that was also achieved with lid swapping. This study reinforces the importance of the lid domains and their amino acid compositions in determining the substrate specificity of lipases, but the generalization of the lid domain swapping between lipases or the introduction of specific mutations in the lid domain to improve lipase activity may require further investigation.

Funder

FuturEnzyme Project funded by the European Union’s Horizon 2020 Research and Innovation Programme

Ministerio de Ciencia e Innovación, Agencia Estatal de Investigación (AEI)

Fondo Europeo de Desarrollo Regional (ERDF) A way of making Europe and the European Union NextGenerationEU/PRTR

Spanish Ministry of Science and Innovation for a PhD fellowship

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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