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Cytomegalovirus Protease Targeted Prodrug Development

[Image: see text] Human cytomegalovirus (HCMV) is a prevalent virus that infects up to 90% of the population. The goal of this research is to determine if small molecular prodrug substrates can be developed for a specific HCMV encoded protease and thus achieve site-specific activation. HCMV encodes...

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Autores principales: Sabit, Hairat, Dahan, Arik, Sun, Jing, Provoda, Chester J., Lee, Kyung-Dall, Hilfinger, John H., Amidon, Gordon L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2013
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3616455/
https://www.ncbi.nlm.nih.gov/pubmed/23485093
http://dx.doi.org/10.1021/mp3007067
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author Sabit, Hairat
Dahan, Arik
Sun, Jing
Provoda, Chester J.
Lee, Kyung-Dall
Hilfinger, John H.
Amidon, Gordon L.
author_facet Sabit, Hairat
Dahan, Arik
Sun, Jing
Provoda, Chester J.
Lee, Kyung-Dall
Hilfinger, John H.
Amidon, Gordon L.
author_sort Sabit, Hairat
collection PubMed
description [Image: see text] Human cytomegalovirus (HCMV) is a prevalent virus that infects up to 90% of the population. The goal of this research is to determine if small molecular prodrug substrates can be developed for a specific HCMV encoded protease and thus achieve site-specific activation. HCMV encodes a 256 amino acid serine protease that is responsible for capsid assembly, an essential process for herpes virus production. The esterase activity of the more stable HCMV A143T/A144T protease mutant was evaluated with model p-nitrophenol (ONp) esters, Boc-Xaa-ONp (Ala, Leu, Ile, Val, Gln, Phe at the Xaa position). We demonstrate that the A143T/A144T mutant has esterase activity toward specific small ester compounds, e.g., Boc-l-Ala-ONp. Mono amino acid and dipeptide prodrugs of ganciclovir (GCV) were also synthesized and evaluated for hydrolysis by the A143T/A144T protease mutant in solution. Hydrolysis of these prodrugs was also evaluated in Caco-2 cell homogenates, human liver microsomes (HLMs), and rat and human plasma. For the selectivity potential of the prodrugs, the hydrolysis ratio was evaluated as a percentage of prodrug hydrolyzed by the HCMV protease over the percentages of prodrug hydrolyses by Caco-2 cell homogenates, HLMs, and human/rat plasma. A dipeptide prodrug of ganciclovir, Ac-l-Gln-l-Ala-GCV, emerged as a potential selective prodrug candidate. The results of this research demonstrate that targeting prodrugs for activation by a specific protease encoded by the infectious HCMV pathogen may be achievable.
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spelling pubmed-36164552013-04-04 Cytomegalovirus Protease Targeted Prodrug Development Sabit, Hairat Dahan, Arik Sun, Jing Provoda, Chester J. Lee, Kyung-Dall Hilfinger, John H. Amidon, Gordon L. Mol Pharm [Image: see text] Human cytomegalovirus (HCMV) is a prevalent virus that infects up to 90% of the population. The goal of this research is to determine if small molecular prodrug substrates can be developed for a specific HCMV encoded protease and thus achieve site-specific activation. HCMV encodes a 256 amino acid serine protease that is responsible for capsid assembly, an essential process for herpes virus production. The esterase activity of the more stable HCMV A143T/A144T protease mutant was evaluated with model p-nitrophenol (ONp) esters, Boc-Xaa-ONp (Ala, Leu, Ile, Val, Gln, Phe at the Xaa position). We demonstrate that the A143T/A144T mutant has esterase activity toward specific small ester compounds, e.g., Boc-l-Ala-ONp. Mono amino acid and dipeptide prodrugs of ganciclovir (GCV) were also synthesized and evaluated for hydrolysis by the A143T/A144T protease mutant in solution. Hydrolysis of these prodrugs was also evaluated in Caco-2 cell homogenates, human liver microsomes (HLMs), and rat and human plasma. For the selectivity potential of the prodrugs, the hydrolysis ratio was evaluated as a percentage of prodrug hydrolyzed by the HCMV protease over the percentages of prodrug hydrolyses by Caco-2 cell homogenates, HLMs, and human/rat plasma. A dipeptide prodrug of ganciclovir, Ac-l-Gln-l-Ala-GCV, emerged as a potential selective prodrug candidate. The results of this research demonstrate that targeting prodrugs for activation by a specific protease encoded by the infectious HCMV pathogen may be achievable. American Chemical Society 2013-03-13 2013-04-01 /pmc/articles/PMC3616455/ /pubmed/23485093 http://dx.doi.org/10.1021/mp3007067 Text en Copyright © 2013 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Sabit, Hairat
Dahan, Arik
Sun, Jing
Provoda, Chester J.
Lee, Kyung-Dall
Hilfinger, John H.
Amidon, Gordon L.
Cytomegalovirus Protease Targeted Prodrug Development
title Cytomegalovirus Protease Targeted Prodrug Development
title_full Cytomegalovirus Protease Targeted Prodrug Development
title_fullStr Cytomegalovirus Protease Targeted Prodrug Development
title_full_unstemmed Cytomegalovirus Protease Targeted Prodrug Development
title_short Cytomegalovirus Protease Targeted Prodrug Development
title_sort cytomegalovirus protease targeted prodrug development
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3616455/
https://www.ncbi.nlm.nih.gov/pubmed/23485093
http://dx.doi.org/10.1021/mp3007067
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