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Discovery of Novel Potential Reversible Peptidyl Arginine Deiminase Inhibitor

Citrullination, a posttranslational modification, is catalyzed by peptidylarginine deiminases (PADs), a unique family of enzymes that converts peptidyl-arginine to peptidyl-citrulline. Overexpression and/or increased PAD activity is observed in rheumatoid arthritis (RA), Alzheimer’s disease, multipl...

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Autores principales: Aliko, Ardita, Kamińska, Marta, Falkowski, Katherine, Bielecka, Ewa, Benedyk-Machaczka, Malgorzata, Malicki, Stanisław, Kozieł, Joanna, Wong, Alicia, Bryzek, Danuta, Kantyka, Tomasz, Mydel, Piotr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539144/
https://www.ncbi.nlm.nih.gov/pubmed/31052493
http://dx.doi.org/10.3390/ijms20092174
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author Aliko, Ardita
Kamińska, Marta
Falkowski, Katherine
Bielecka, Ewa
Benedyk-Machaczka, Malgorzata
Malicki, Stanisław
Kozieł, Joanna
Wong, Alicia
Bryzek, Danuta
Kantyka, Tomasz
Mydel, Piotr
author_facet Aliko, Ardita
Kamińska, Marta
Falkowski, Katherine
Bielecka, Ewa
Benedyk-Machaczka, Malgorzata
Malicki, Stanisław
Kozieł, Joanna
Wong, Alicia
Bryzek, Danuta
Kantyka, Tomasz
Mydel, Piotr
author_sort Aliko, Ardita
collection PubMed
description Citrullination, a posttranslational modification, is catalyzed by peptidylarginine deiminases (PADs), a unique family of enzymes that converts peptidyl-arginine to peptidyl-citrulline. Overexpression and/or increased PAD activity is observed in rheumatoid arthritis (RA), Alzheimer’s disease, multiple sclerosis, and cancer. Moreover, bacterial PADs, such as Porphyromonas gingivalis PAD (PPAD), may have a role in the pathogenesis of RA, indicating PADs as promising therapeutic targets. Herein, six novel compounds were examined as potential inhibitors of human PAD4 and PPAD, and compared to an irreversible PAD inhibitor, Cl-amidine. Four of the tested compounds (compounds 2, 3, 4, and 6) exhibited a micromolar-range inhibition potency against PAD4 and no effect against PPAD in the in vitro assays. Compound 4 was able to inhibit the PAD4-induced citrullination of H3 histone with higher efficiency than Cl-amidine. In conclusion, compound 4 was highly effective and presents a promising direction in the search for novel RA treatment strategies.
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spelling pubmed-65391442019-06-04 Discovery of Novel Potential Reversible Peptidyl Arginine Deiminase Inhibitor Aliko, Ardita Kamińska, Marta Falkowski, Katherine Bielecka, Ewa Benedyk-Machaczka, Malgorzata Malicki, Stanisław Kozieł, Joanna Wong, Alicia Bryzek, Danuta Kantyka, Tomasz Mydel, Piotr Int J Mol Sci Article Citrullination, a posttranslational modification, is catalyzed by peptidylarginine deiminases (PADs), a unique family of enzymes that converts peptidyl-arginine to peptidyl-citrulline. Overexpression and/or increased PAD activity is observed in rheumatoid arthritis (RA), Alzheimer’s disease, multiple sclerosis, and cancer. Moreover, bacterial PADs, such as Porphyromonas gingivalis PAD (PPAD), may have a role in the pathogenesis of RA, indicating PADs as promising therapeutic targets. Herein, six novel compounds were examined as potential inhibitors of human PAD4 and PPAD, and compared to an irreversible PAD inhibitor, Cl-amidine. Four of the tested compounds (compounds 2, 3, 4, and 6) exhibited a micromolar-range inhibition potency against PAD4 and no effect against PPAD in the in vitro assays. Compound 4 was able to inhibit the PAD4-induced citrullination of H3 histone with higher efficiency than Cl-amidine. In conclusion, compound 4 was highly effective and presents a promising direction in the search for novel RA treatment strategies. MDPI 2019-05-02 /pmc/articles/PMC6539144/ /pubmed/31052493 http://dx.doi.org/10.3390/ijms20092174 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
Aliko, Ardita
Kamińska, Marta
Falkowski, Katherine
Bielecka, Ewa
Benedyk-Machaczka, Malgorzata
Malicki, Stanisław
Kozieł, Joanna
Wong, Alicia
Bryzek, Danuta
Kantyka, Tomasz
Mydel, Piotr
Discovery of Novel Potential Reversible Peptidyl Arginine Deiminase Inhibitor
title Discovery of Novel Potential Reversible Peptidyl Arginine Deiminase Inhibitor
title_full Discovery of Novel Potential Reversible Peptidyl Arginine Deiminase Inhibitor
title_fullStr Discovery of Novel Potential Reversible Peptidyl Arginine Deiminase Inhibitor
title_full_unstemmed Discovery of Novel Potential Reversible Peptidyl Arginine Deiminase Inhibitor
title_short Discovery of Novel Potential Reversible Peptidyl Arginine Deiminase Inhibitor
title_sort discovery of novel potential reversible peptidyl arginine deiminase inhibitor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539144/
https://www.ncbi.nlm.nih.gov/pubmed/31052493
http://dx.doi.org/10.3390/ijms20092174
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