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Activation mechanism and activity of globupain, a thermostable C11 protease from the Arctic Mid-Ocean Ridge hydrothermal system

Deep-sea hydrothermal vents offer unique habitats for heat tolerant enzymes with potential new enzymatic properties. Here, we present the novel C11 protease globupain, which was prospected from a metagenome-assembled genome of uncultivated Archaeoglobales sampled from the Soria Moria hydrothermal ve...

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Autores principales: Røyseth, Victoria, Hurysz, Brianna M., Kaczorowska, Anna-Karina, Dorawa, Sebastian, Fedøy, Anita-Elin, Arsın, Hasan, Serafim, Mateus Sá M., Myers, Samuel A., Werbowy, Olesia, Kaczorowski, Tadeusz, Stokke, Runar, O’Donoghue, Anthony J., Steen, Ida Helene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10315481/
https://www.ncbi.nlm.nih.gov/pubmed/37405169
http://dx.doi.org/10.3389/fmicb.2023.1199085
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author Røyseth, Victoria
Hurysz, Brianna M.
Kaczorowska, Anna-Karina
Dorawa, Sebastian
Fedøy, Anita-Elin
Arsın, Hasan
Serafim, Mateus Sá M.
Myers, Samuel A.
Werbowy, Olesia
Kaczorowski, Tadeusz
Stokke, Runar
O’Donoghue, Anthony J.
Steen, Ida Helene
author_facet Røyseth, Victoria
Hurysz, Brianna M.
Kaczorowska, Anna-Karina
Dorawa, Sebastian
Fedøy, Anita-Elin
Arsın, Hasan
Serafim, Mateus Sá M.
Myers, Samuel A.
Werbowy, Olesia
Kaczorowski, Tadeusz
Stokke, Runar
O’Donoghue, Anthony J.
Steen, Ida Helene
author_sort Røyseth, Victoria
collection PubMed
description Deep-sea hydrothermal vents offer unique habitats for heat tolerant enzymes with potential new enzymatic properties. Here, we present the novel C11 protease globupain, which was prospected from a metagenome-assembled genome of uncultivated Archaeoglobales sampled from the Soria Moria hydrothermal vent system located on the Arctic Mid-Ocean Ridge. Sequence comparisons against the MEROPS-MPRO database showed that globupain has the highest sequence identity to C11-like proteases present in human gut and intestinal bacteria. Successful recombinant expression in Escherichia coli of the wild-type zymogen and 13 mutant substitution variants allowed assessment of residues involved in maturation and activity of the enzyme. For activation, globupain required the addition of DTT and Ca(2+). When activated, the 52kDa proenzyme was processed at K(137) and K(144) into a 12kDa light- and 32kDa heavy chain heterodimer. A structurally conserved H(132)/C(185) catalytic dyad was responsible for the proteolytic activity, and the enzyme demonstrated the ability to activate in-trans. Globupain exhibited caseinolytic activity and showed a strong preference for arginine in the P1 position, with Boc-QAR-aminomethylcoumarin (AMC) as the best substrate out of a total of 17 fluorogenic AMC substrates tested. Globupain was thermostable (T(m activated enzyme) = 94.51°C ± 0.09°C) with optimal activity at 75°C and pH 7.1. Characterization of globupain has expanded our knowledge of the catalytic properties and activation mechanisms of temperature tolerant marine C11 proteases. The unique combination of features such as elevated thermostability, activity at relatively low pH values, and ability to operate under high reducing conditions makes globupain a potential intriguing candidate for use in diverse industrial and biotechnology sectors.
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spelling pubmed-103154812023-07-04 Activation mechanism and activity of globupain, a thermostable C11 protease from the Arctic Mid-Ocean Ridge hydrothermal system Røyseth, Victoria Hurysz, Brianna M. Kaczorowska, Anna-Karina Dorawa, Sebastian Fedøy, Anita-Elin Arsın, Hasan Serafim, Mateus Sá M. Myers, Samuel A. Werbowy, Olesia Kaczorowski, Tadeusz Stokke, Runar O’Donoghue, Anthony J. Steen, Ida Helene Front Microbiol Microbiology Deep-sea hydrothermal vents offer unique habitats for heat tolerant enzymes with potential new enzymatic properties. Here, we present the novel C11 protease globupain, which was prospected from a metagenome-assembled genome of uncultivated Archaeoglobales sampled from the Soria Moria hydrothermal vent system located on the Arctic Mid-Ocean Ridge. Sequence comparisons against the MEROPS-MPRO database showed that globupain has the highest sequence identity to C11-like proteases present in human gut and intestinal bacteria. Successful recombinant expression in Escherichia coli of the wild-type zymogen and 13 mutant substitution variants allowed assessment of residues involved in maturation and activity of the enzyme. For activation, globupain required the addition of DTT and Ca(2+). When activated, the 52kDa proenzyme was processed at K(137) and K(144) into a 12kDa light- and 32kDa heavy chain heterodimer. A structurally conserved H(132)/C(185) catalytic dyad was responsible for the proteolytic activity, and the enzyme demonstrated the ability to activate in-trans. Globupain exhibited caseinolytic activity and showed a strong preference for arginine in the P1 position, with Boc-QAR-aminomethylcoumarin (AMC) as the best substrate out of a total of 17 fluorogenic AMC substrates tested. Globupain was thermostable (T(m activated enzyme) = 94.51°C ± 0.09°C) with optimal activity at 75°C and pH 7.1. Characterization of globupain has expanded our knowledge of the catalytic properties and activation mechanisms of temperature tolerant marine C11 proteases. The unique combination of features such as elevated thermostability, activity at relatively low pH values, and ability to operate under high reducing conditions makes globupain a potential intriguing candidate for use in diverse industrial and biotechnology sectors. Frontiers Media S.A. 2023-06-19 /pmc/articles/PMC10315481/ /pubmed/37405169 http://dx.doi.org/10.3389/fmicb.2023.1199085 Text en Copyright © 2023 Røyseth, Hurysz, Kaczorowska, Dorawa, Fedøy, Arsın, Serafim, Myers, Werbowy, Kaczorowski, Stokke, O’Donoghue and Steen. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Røyseth, Victoria
Hurysz, Brianna M.
Kaczorowska, Anna-Karina
Dorawa, Sebastian
Fedøy, Anita-Elin
Arsın, Hasan
Serafim, Mateus Sá M.
Myers, Samuel A.
Werbowy, Olesia
Kaczorowski, Tadeusz
Stokke, Runar
O’Donoghue, Anthony J.
Steen, Ida Helene
Activation mechanism and activity of globupain, a thermostable C11 protease from the Arctic Mid-Ocean Ridge hydrothermal system
title Activation mechanism and activity of globupain, a thermostable C11 protease from the Arctic Mid-Ocean Ridge hydrothermal system
title_full Activation mechanism and activity of globupain, a thermostable C11 protease from the Arctic Mid-Ocean Ridge hydrothermal system
title_fullStr Activation mechanism and activity of globupain, a thermostable C11 protease from the Arctic Mid-Ocean Ridge hydrothermal system
title_full_unstemmed Activation mechanism and activity of globupain, a thermostable C11 protease from the Arctic Mid-Ocean Ridge hydrothermal system
title_short Activation mechanism and activity of globupain, a thermostable C11 protease from the Arctic Mid-Ocean Ridge hydrothermal system
title_sort activation mechanism and activity of globupain, a thermostable c11 protease from the arctic mid-ocean ridge hydrothermal system
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10315481/
https://www.ncbi.nlm.nih.gov/pubmed/37405169
http://dx.doi.org/10.3389/fmicb.2023.1199085
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