Cargando…

Screening of 5- and 6-Substituted Amiloride Libraries Identifies Dual-uPA/NHE1 Active and Single Target-Selective Inhibitors

The K(+)-sparing diuretic amiloride shows off-target anti-cancer effects in multiple rodent models. These effects arise from the inhibition of two distinct cancer targets: the trypsin-like serine protease urokinase-type plasminogen activator (uPA), a cell-surface mediator of matrix degradation and t...

Descripción completa

Detalles Bibliográficos
Autores principales: Buckley, Benjamin J., Kumar, Ashna, Aboelela, Ashraf, Bujaroski, Richard S., Li, Xiuju, Majed, Hiwa, Fliegel, Larry, Ranson, Marie, Kelso, Michael J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8000185/
https://www.ncbi.nlm.nih.gov/pubmed/33804289
http://dx.doi.org/10.3390/ijms22062999
_version_ 1783670946387722240
author Buckley, Benjamin J.
Kumar, Ashna
Aboelela, Ashraf
Bujaroski, Richard S.
Li, Xiuju
Majed, Hiwa
Fliegel, Larry
Ranson, Marie
Kelso, Michael J.
author_facet Buckley, Benjamin J.
Kumar, Ashna
Aboelela, Ashraf
Bujaroski, Richard S.
Li, Xiuju
Majed, Hiwa
Fliegel, Larry
Ranson, Marie
Kelso, Michael J.
author_sort Buckley, Benjamin J.
collection PubMed
description The K(+)-sparing diuretic amiloride shows off-target anti-cancer effects in multiple rodent models. These effects arise from the inhibition of two distinct cancer targets: the trypsin-like serine protease urokinase-type plasminogen activator (uPA), a cell-surface mediator of matrix degradation and tumor cell invasiveness, and the sodium-hydrogen exchanger isoform-1 (NHE1), a central regulator of transmembrane pH that supports carcinogenic progression. In this study, we co-screened our library of 5- and 6-substituted amilorides against these two targets, aiming to identify single-target selective and dual-targeting inhibitors for use as complementary pharmacological probes. Closely related analogs substituted at the 6-position with pyrimidines were identified as dual-targeting (pyrimidine 24 uPA IC(50) = 175 nM, NHE1 IC(50) = 266 nM, uPA selectivity ratio = 1.5) and uPA-selective (methoxypyrimidine 26 uPA IC(50) = 86 nM, NHE1 IC(50) = 12,290 nM, uPA selectivity ratio = 143) inhibitors, while high NHE1 potency and selectivity was seen with 5-morpholino (29 NHE1 IC(50) = 129 nM, uPA IC(50) = 10,949 nM; NHE1 selectivity ratio = 85) and 5-(1,4-oxazepine) (30 NHE1 IC(50) = 85 nM, uPA IC(50) = 5715 nM; NHE1 selectivity ratio = 67) analogs. Together, these amilorides comprise a new toolkit of chemotype-matched, non-cytotoxic probes for dissecting the pharmacological effects of selective uPA and NHE1 inhibition versus dual-uPA/NHE1 inhibition.
format Online
Article
Text
id pubmed-8000185
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80001852021-03-28 Screening of 5- and 6-Substituted Amiloride Libraries Identifies Dual-uPA/NHE1 Active and Single Target-Selective Inhibitors Buckley, Benjamin J. Kumar, Ashna Aboelela, Ashraf Bujaroski, Richard S. Li, Xiuju Majed, Hiwa Fliegel, Larry Ranson, Marie Kelso, Michael J. Int J Mol Sci Article The K(+)-sparing diuretic amiloride shows off-target anti-cancer effects in multiple rodent models. These effects arise from the inhibition of two distinct cancer targets: the trypsin-like serine protease urokinase-type plasminogen activator (uPA), a cell-surface mediator of matrix degradation and tumor cell invasiveness, and the sodium-hydrogen exchanger isoform-1 (NHE1), a central regulator of transmembrane pH that supports carcinogenic progression. In this study, we co-screened our library of 5- and 6-substituted amilorides against these two targets, aiming to identify single-target selective and dual-targeting inhibitors for use as complementary pharmacological probes. Closely related analogs substituted at the 6-position with pyrimidines were identified as dual-targeting (pyrimidine 24 uPA IC(50) = 175 nM, NHE1 IC(50) = 266 nM, uPA selectivity ratio = 1.5) and uPA-selective (methoxypyrimidine 26 uPA IC(50) = 86 nM, NHE1 IC(50) = 12,290 nM, uPA selectivity ratio = 143) inhibitors, while high NHE1 potency and selectivity was seen with 5-morpholino (29 NHE1 IC(50) = 129 nM, uPA IC(50) = 10,949 nM; NHE1 selectivity ratio = 85) and 5-(1,4-oxazepine) (30 NHE1 IC(50) = 85 nM, uPA IC(50) = 5715 nM; NHE1 selectivity ratio = 67) analogs. Together, these amilorides comprise a new toolkit of chemotype-matched, non-cytotoxic probes for dissecting the pharmacological effects of selective uPA and NHE1 inhibition versus dual-uPA/NHE1 inhibition. MDPI 2021-03-15 /pmc/articles/PMC8000185/ /pubmed/33804289 http://dx.doi.org/10.3390/ijms22062999 Text en © 2021 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
Buckley, Benjamin J.
Kumar, Ashna
Aboelela, Ashraf
Bujaroski, Richard S.
Li, Xiuju
Majed, Hiwa
Fliegel, Larry
Ranson, Marie
Kelso, Michael J.
Screening of 5- and 6-Substituted Amiloride Libraries Identifies Dual-uPA/NHE1 Active and Single Target-Selective Inhibitors
title Screening of 5- and 6-Substituted Amiloride Libraries Identifies Dual-uPA/NHE1 Active and Single Target-Selective Inhibitors
title_full Screening of 5- and 6-Substituted Amiloride Libraries Identifies Dual-uPA/NHE1 Active and Single Target-Selective Inhibitors
title_fullStr Screening of 5- and 6-Substituted Amiloride Libraries Identifies Dual-uPA/NHE1 Active and Single Target-Selective Inhibitors
title_full_unstemmed Screening of 5- and 6-Substituted Amiloride Libraries Identifies Dual-uPA/NHE1 Active and Single Target-Selective Inhibitors
title_short Screening of 5- and 6-Substituted Amiloride Libraries Identifies Dual-uPA/NHE1 Active and Single Target-Selective Inhibitors
title_sort screening of 5- and 6-substituted amiloride libraries identifies dual-upa/nhe1 active and single target-selective inhibitors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8000185/
https://www.ncbi.nlm.nih.gov/pubmed/33804289
http://dx.doi.org/10.3390/ijms22062999
work_keys_str_mv AT buckleybenjaminj screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors
AT kumarashna screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors
AT aboelelaashraf screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors
AT bujaroskirichards screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors
AT lixiuju screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors
AT majedhiwa screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors
AT fliegellarry screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors
AT ransonmarie screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors
AT kelsomichaelj screeningof5and6substitutedamiloridelibrariesidentifiesdualupanhe1activeandsingletargetselectiveinhibitors