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Adeno-Associated Virus VP1u Exhibits Protease Activity

Adeno-associated viruses (AAVs) are being developed for gene delivery applications, with more than 100 ongoing clinical trials aimed at the treatment of monogenic diseases. In this study, the unique N-terminus of AAV capsid viral protein 1 (VP1u), containing a canonical group XIII PLA(2) enzyme doma...

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Autores principales: Kurian, Justin J., Lakshmanan, Renuk, Chmely, William M., Hull, Joshua A., Yu, Jennifer C., Bennett, Antonette, McKenna, Robert, Agbandje-McKenna, Mavis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6563295/
https://www.ncbi.nlm.nih.gov/pubmed/31035643
http://dx.doi.org/10.3390/v11050399
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author Kurian, Justin J.
Lakshmanan, Renuk
Chmely, William M.
Hull, Joshua A.
Yu, Jennifer C.
Bennett, Antonette
McKenna, Robert
Agbandje-McKenna, Mavis
author_facet Kurian, Justin J.
Lakshmanan, Renuk
Chmely, William M.
Hull, Joshua A.
Yu, Jennifer C.
Bennett, Antonette
McKenna, Robert
Agbandje-McKenna, Mavis
author_sort Kurian, Justin J.
collection PubMed
description Adeno-associated viruses (AAVs) are being developed for gene delivery applications, with more than 100 ongoing clinical trials aimed at the treatment of monogenic diseases. In this study, the unique N-terminus of AAV capsid viral protein 1 (VP1u), containing a canonical group XIII PLA(2) enzyme domain, was observed to also exhibit proteolytic activity. This protease activity can target casein and gelatin, two standard substrates used for testing protease function but does not self-cleave in the context of the capsid or target globular proteins, for example, bovine serum albumin (BSA). However, heated BSA is susceptible to VP1u-mediated cleavage, suggesting that disordered proteins are substrates for this protease function. The protease activity is partially inhibited by divalent cation chelators ethylenediaminetetraacetic acid (EDTA) and ethylene-bis(oxyethylenenitrilo)tetraacetic acid (EGTA), and human alpha-2-macroglobulin (A2M), a non-specific protease inhibitor. Interestingly, both the bovine pancreatic (group VIIA) and bee venom (group III) PLA(2) enzymes also exhibit protease function against casein. This indicates that PLA(2) groups, including VP1u, have a protease function. Amino acid substitution of the PLA(2) catalytic motif ((76)HD/AN) in the AAV2 VP1u resulted in attenuation of protease activity, suggesting that the protease and PLA(2) active sites are related. However, the amino acid substitution of histidine H38, which is not involved in PLA(2) function, to alanine, also affects protease activity, suggesting that the active site/mechanism of the PLA(2) and protease function are not identical.
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spelling pubmed-65632952019-06-17 Adeno-Associated Virus VP1u Exhibits Protease Activity Kurian, Justin J. Lakshmanan, Renuk Chmely, William M. Hull, Joshua A. Yu, Jennifer C. Bennett, Antonette McKenna, Robert Agbandje-McKenna, Mavis Viruses Article Adeno-associated viruses (AAVs) are being developed for gene delivery applications, with more than 100 ongoing clinical trials aimed at the treatment of monogenic diseases. In this study, the unique N-terminus of AAV capsid viral protein 1 (VP1u), containing a canonical group XIII PLA(2) enzyme domain, was observed to also exhibit proteolytic activity. This protease activity can target casein and gelatin, two standard substrates used for testing protease function but does not self-cleave in the context of the capsid or target globular proteins, for example, bovine serum albumin (BSA). However, heated BSA is susceptible to VP1u-mediated cleavage, suggesting that disordered proteins are substrates for this protease function. The protease activity is partially inhibited by divalent cation chelators ethylenediaminetetraacetic acid (EDTA) and ethylene-bis(oxyethylenenitrilo)tetraacetic acid (EGTA), and human alpha-2-macroglobulin (A2M), a non-specific protease inhibitor. Interestingly, both the bovine pancreatic (group VIIA) and bee venom (group III) PLA(2) enzymes also exhibit protease function against casein. This indicates that PLA(2) groups, including VP1u, have a protease function. Amino acid substitution of the PLA(2) catalytic motif ((76)HD/AN) in the AAV2 VP1u resulted in attenuation of protease activity, suggesting that the protease and PLA(2) active sites are related. However, the amino acid substitution of histidine H38, which is not involved in PLA(2) function, to alanine, also affects protease activity, suggesting that the active site/mechanism of the PLA(2) and protease function are not identical. MDPI 2019-04-29 /pmc/articles/PMC6563295/ /pubmed/31035643 http://dx.doi.org/10.3390/v11050399 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kurian, Justin J.
Lakshmanan, Renuk
Chmely, William M.
Hull, Joshua A.
Yu, Jennifer C.
Bennett, Antonette
McKenna, Robert
Agbandje-McKenna, Mavis
Adeno-Associated Virus VP1u Exhibits Protease Activity
title Adeno-Associated Virus VP1u Exhibits Protease Activity
title_full Adeno-Associated Virus VP1u Exhibits Protease Activity
title_fullStr Adeno-Associated Virus VP1u Exhibits Protease Activity
title_full_unstemmed Adeno-Associated Virus VP1u Exhibits Protease Activity
title_short Adeno-Associated Virus VP1u Exhibits Protease Activity
title_sort adeno-associated virus vp1u exhibits protease activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6563295/
https://www.ncbi.nlm.nih.gov/pubmed/31035643
http://dx.doi.org/10.3390/v11050399
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