Cargando…

Characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization

Butelase-1, an asparaginyl endopeptidase or legumain, is the prototypical and fastest known Asn/Asp-specific peptide ligase. It is highly useful for engineering and macrocyclization of peptides and proteins. However, certain biochemical properties and applications of naturally occurring and recombin...

Descripción completa

Detalles Bibliográficos
Autores principales: Hemu, Xinya, Zhang, Xiaohong, Nguyen, Giang K. T., To, Janet, Serra, Aida, Loo, Shining, Sze, Siu Kwan, Liu, Chuan-Fa, Tam, James P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9034278/
https://www.ncbi.nlm.nih.gov/pubmed/35480425
http://dx.doi.org/10.1039/d1ra03763c
_version_ 1784693080664834048
author Hemu, Xinya
Zhang, Xiaohong
Nguyen, Giang K. T.
To, Janet
Serra, Aida
Loo, Shining
Sze, Siu Kwan
Liu, Chuan-Fa
Tam, James P.
author_facet Hemu, Xinya
Zhang, Xiaohong
Nguyen, Giang K. T.
To, Janet
Serra, Aida
Loo, Shining
Sze, Siu Kwan
Liu, Chuan-Fa
Tam, James P.
author_sort Hemu, Xinya
collection PubMed
description Butelase-1, an asparaginyl endopeptidase or legumain, is the prototypical and fastest known Asn/Asp-specific peptide ligase. It is highly useful for engineering and macrocyclization of peptides and proteins. However, certain biochemical properties and applications of naturally occurring and recombinant butelase-1 remain unexplored. Here we report methods to increase the yield of natural and bacterial expressed recombinant butelase-1 and how they can be used to improve the stability and activity of two important industrial enzymes, lipase and phytase, by end-to-end circularization. First, the yield of natural butelase-1 was increased 3-fold to 15 mg kg(−1) by determining its highest distribution which is found in young tissues, such as shoots. The yield of recombinantly-produced soluble butelase-1 was improved by promoting cytoplasmic disulfide folding, codon changes, and truncation of the N-terminal pro-domain. Natural and recombinant butelase-1 displayed similar ligase activity, physical stability, and salt tolerance. Furthermore, the processing and glycosylation sites of natural and recombinant butelase-1 were determined by proteomic analysis. Storage conditions for both forms of butelase-1, frozen or lyophilized, were also optimized. Cyclization of lipase and phytase mediated by either soluble or immobilized butelase-1 was highly efficient and simple, and resulted in increased thermal stability and enhanced enzymatic activity. Overall, improved production of butelase-1 can be exploited to improve the biocatalytic efficacy of lipase and phytase by end-to-end cyclization. In turn, ligase-improved enzymes could be a general and environmentally friendly strategy for producing more stable and efficient industrial enzymes.
format Online
Article
Text
id pubmed-9034278
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90342782022-04-26 Characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization Hemu, Xinya Zhang, Xiaohong Nguyen, Giang K. T. To, Janet Serra, Aida Loo, Shining Sze, Siu Kwan Liu, Chuan-Fa Tam, James P. RSC Adv Chemistry Butelase-1, an asparaginyl endopeptidase or legumain, is the prototypical and fastest known Asn/Asp-specific peptide ligase. It is highly useful for engineering and macrocyclization of peptides and proteins. However, certain biochemical properties and applications of naturally occurring and recombinant butelase-1 remain unexplored. Here we report methods to increase the yield of natural and bacterial expressed recombinant butelase-1 and how they can be used to improve the stability and activity of two important industrial enzymes, lipase and phytase, by end-to-end circularization. First, the yield of natural butelase-1 was increased 3-fold to 15 mg kg(−1) by determining its highest distribution which is found in young tissues, such as shoots. The yield of recombinantly-produced soluble butelase-1 was improved by promoting cytoplasmic disulfide folding, codon changes, and truncation of the N-terminal pro-domain. Natural and recombinant butelase-1 displayed similar ligase activity, physical stability, and salt tolerance. Furthermore, the processing and glycosylation sites of natural and recombinant butelase-1 were determined by proteomic analysis. Storage conditions for both forms of butelase-1, frozen or lyophilized, were also optimized. Cyclization of lipase and phytase mediated by either soluble or immobilized butelase-1 was highly efficient and simple, and resulted in increased thermal stability and enhanced enzymatic activity. Overall, improved production of butelase-1 can be exploited to improve the biocatalytic efficacy of lipase and phytase by end-to-end cyclization. In turn, ligase-improved enzymes could be a general and environmentally friendly strategy for producing more stable and efficient industrial enzymes. The Royal Society of Chemistry 2021-06-30 /pmc/articles/PMC9034278/ /pubmed/35480425 http://dx.doi.org/10.1039/d1ra03763c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hemu, Xinya
Zhang, Xiaohong
Nguyen, Giang K. T.
To, Janet
Serra, Aida
Loo, Shining
Sze, Siu Kwan
Liu, Chuan-Fa
Tam, James P.
Characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization
title Characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization
title_full Characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization
title_fullStr Characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization
title_full_unstemmed Characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization
title_short Characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization
title_sort characterization and application of natural and recombinant butelase-1 to improve industrial enzymes by end-to-end circularization
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9034278/
https://www.ncbi.nlm.nih.gov/pubmed/35480425
http://dx.doi.org/10.1039/d1ra03763c
work_keys_str_mv AT hemuxinya characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization
AT zhangxiaohong characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization
AT nguyengiangkt characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization
AT tojanet characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization
AT serraaida characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization
AT looshining characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization
AT szesiukwan characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization
AT liuchuanfa characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization
AT tamjamesp characterizationandapplicationofnaturalandrecombinantbutelase1toimproveindustrialenzymesbyendtoendcircularization