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The legumain McPAL1 from Momordica cochinchinensis is a highly stable Asx-specific splicing enzyme

Legumains, also known as asparaginyl endopeptidases (AEPs), cleave peptide bonds after Asn/Asp (Asx) residues. In plants, certain legumains also have ligase activity that catalyzes biosynthesis of Asx-containing cyclic peptides. An example is the biosynthesis of MCoTI-I/II, a squash family-derived c...

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Autores principales: Liew, Heng Tai, To, Janet, Zhang, Xiaohong, Hemu, Xinya, Chan, Ning-Yu, Serra, Aida, Sze, Siu Kwan, Liu, Chuan-fa, Tam, James P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8600085/
https://www.ncbi.nlm.nih.gov/pubmed/34710371
http://dx.doi.org/10.1016/j.jbc.2021.101325
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author Liew, Heng Tai
To, Janet
Zhang, Xiaohong
Hemu, Xinya
Chan, Ning-Yu
Serra, Aida
Sze, Siu Kwan
Liu, Chuan-fa
Tam, James P.
author_facet Liew, Heng Tai
To, Janet
Zhang, Xiaohong
Hemu, Xinya
Chan, Ning-Yu
Serra, Aida
Sze, Siu Kwan
Liu, Chuan-fa
Tam, James P.
author_sort Liew, Heng Tai
collection PubMed
description Legumains, also known as asparaginyl endopeptidases (AEPs), cleave peptide bonds after Asn/Asp (Asx) residues. In plants, certain legumains also have ligase activity that catalyzes biosynthesis of Asx-containing cyclic peptides. An example is the biosynthesis of MCoTI-I/II, a squash family-derived cyclic trypsin inhibitor, which involves splicing to remove the N-terminal prodomain and then N-to-C-terminal cyclization of the mature domain. To identify plant legumains responsible for the maturation of these cyclic peptides, we have isolated and characterized a legumain involved in splicing, McPAL1, from Momordica cochinchinensis (Cucurbitaceae) seeds. Functional studies show that recombinantly expressed McPAL1 displays a pH-dependent, trimodal enzymatic profile. At pH 4 to 6, McPAL1 selectively catalyzed Asp-ligation and Asn-cleavage, but at pH 6.5 to 8, Asn-ligation predominated. With peptide substrates containing N-terminal Asn and C-terminal Asp, such as is found in precursors of MCoTI-I/II, McPAL1 mediates proteolysis at the Asn site and then ligation at the Asp site at pH 5 to 6. Also, McPAL1 is an unusually stable legumain that is tolerant of heat and high pH. Together, our results support that McPAL1 is a splicing legumain at acidic pH that can mediate biosynthesis of MCoTI-I/II. We purport that the high thermal and pH stability of McPAL1 could have applications for protein engineering.
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spelling pubmed-86000852021-11-23 The legumain McPAL1 from Momordica cochinchinensis is a highly stable Asx-specific splicing enzyme Liew, Heng Tai To, Janet Zhang, Xiaohong Hemu, Xinya Chan, Ning-Yu Serra, Aida Sze, Siu Kwan Liu, Chuan-fa Tam, James P. J Biol Chem Research Article Legumains, also known as asparaginyl endopeptidases (AEPs), cleave peptide bonds after Asn/Asp (Asx) residues. In plants, certain legumains also have ligase activity that catalyzes biosynthesis of Asx-containing cyclic peptides. An example is the biosynthesis of MCoTI-I/II, a squash family-derived cyclic trypsin inhibitor, which involves splicing to remove the N-terminal prodomain and then N-to-C-terminal cyclization of the mature domain. To identify plant legumains responsible for the maturation of these cyclic peptides, we have isolated and characterized a legumain involved in splicing, McPAL1, from Momordica cochinchinensis (Cucurbitaceae) seeds. Functional studies show that recombinantly expressed McPAL1 displays a pH-dependent, trimodal enzymatic profile. At pH 4 to 6, McPAL1 selectively catalyzed Asp-ligation and Asn-cleavage, but at pH 6.5 to 8, Asn-ligation predominated. With peptide substrates containing N-terminal Asn and C-terminal Asp, such as is found in precursors of MCoTI-I/II, McPAL1 mediates proteolysis at the Asn site and then ligation at the Asp site at pH 5 to 6. Also, McPAL1 is an unusually stable legumain that is tolerant of heat and high pH. Together, our results support that McPAL1 is a splicing legumain at acidic pH that can mediate biosynthesis of MCoTI-I/II. We purport that the high thermal and pH stability of McPAL1 could have applications for protein engineering. American Society for Biochemistry and Molecular Biology 2021-10-26 /pmc/articles/PMC8600085/ /pubmed/34710371 http://dx.doi.org/10.1016/j.jbc.2021.101325 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Liew, Heng Tai
To, Janet
Zhang, Xiaohong
Hemu, Xinya
Chan, Ning-Yu
Serra, Aida
Sze, Siu Kwan
Liu, Chuan-fa
Tam, James P.
The legumain McPAL1 from Momordica cochinchinensis is a highly stable Asx-specific splicing enzyme
title The legumain McPAL1 from Momordica cochinchinensis is a highly stable Asx-specific splicing enzyme
title_full The legumain McPAL1 from Momordica cochinchinensis is a highly stable Asx-specific splicing enzyme
title_fullStr The legumain McPAL1 from Momordica cochinchinensis is a highly stable Asx-specific splicing enzyme
title_full_unstemmed The legumain McPAL1 from Momordica cochinchinensis is a highly stable Asx-specific splicing enzyme
title_short The legumain McPAL1 from Momordica cochinchinensis is a highly stable Asx-specific splicing enzyme
title_sort legumain mcpal1 from momordica cochinchinensis is a highly stable asx-specific splicing enzyme
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8600085/
https://www.ncbi.nlm.nih.gov/pubmed/34710371
http://dx.doi.org/10.1016/j.jbc.2021.101325
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