Development of a selective dual discoidin domain receptor (DDR)/p38 kinase chemical probe

Discoidin domain receptors 1 and 2 (DDR1/2) play a central role in fibrotic disorders, such as renal and pulmonary fibrosis, atherosclerosis, and various forms of cancer. Potent and selective inhibitors, so-called chemical probe compounds, have been developed to study DDR1/2 kinase signaling. Howeve...

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Main Authors: Röhm, S, Berger, B-T, Schröder, M, Chatterjee, D, Mathea, S, Joerger, AC, Pinkas, DM, Bufton, JC, Tjaden, A, Kovooru, L, Kudolo, M, Pohl, C, Bullock, AN, Müller, S, Laufer, S, Knapp, S
Format: Journal article
Language:English
Published: American Chemical Society 2021
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author Röhm, S
Berger, B-T
Schröder, M
Chatterjee, D
Mathea, S
Joerger, AC
Pinkas, DM
Bufton, JC
Tjaden, A
Kovooru, L
Kudolo, M
Pohl, C
Bullock, AN
Müller, S
Laufer, S
Knapp, S
author_facet Röhm, S
Berger, B-T
Schröder, M
Chatterjee, D
Mathea, S
Joerger, AC
Pinkas, DM
Bufton, JC
Tjaden, A
Kovooru, L
Kudolo, M
Pohl, C
Bullock, AN
Müller, S
Laufer, S
Knapp, S
author_sort Röhm, S
collection OXFORD
description Discoidin domain receptors 1 and 2 (DDR1/2) play a central role in fibrotic disorders, such as renal and pulmonary fibrosis, atherosclerosis, and various forms of cancer. Potent and selective inhibitors, so-called chemical probe compounds, have been developed to study DDR1/2 kinase signaling. However, these inhibitors showed undesired activity on other kinases such as the tyrosine protein kinase receptor TIE or tropomyosin receptor kinases, which are related to angiogenesis and neuronal toxicity. In this study, we optimized our recently published p38 mitogen-activated protein kinase inhibitor 7 toward a potent and cell-active dual DDR/p38 chemical probe and developed a structurally related negative control. The structure-guided design approach used provided insights into the P-loop folding process of p38 and how targeting of non-conserved amino acids modulates inhibitor selectivity. The developed and comprehensively characterized DDR/p38 probe, 30 (SR-302), is a valuable tool for studying the role of DDR kinase in normal physiology and in disease development.
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spelling oxford-uuid:b4f26f5c-cd7d-4c61-ba6c-1538cdf0cfc92022-09-12T08:13:38ZDevelopment of a selective dual discoidin domain receptor (DDR)/p38 kinase chemical probeJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:b4f26f5c-cd7d-4c61-ba6c-1538cdf0cfc9EnglishSymplectic ElementsAmerican Chemical Society2021Röhm, SBerger, B-TSchröder, MChatterjee, DMathea, SJoerger, ACPinkas, DMBufton, JCTjaden, AKovooru, LKudolo, MPohl, CBullock, ANMüller, SLaufer, SKnapp, SDiscoidin domain receptors 1 and 2 (DDR1/2) play a central role in fibrotic disorders, such as renal and pulmonary fibrosis, atherosclerosis, and various forms of cancer. Potent and selective inhibitors, so-called chemical probe compounds, have been developed to study DDR1/2 kinase signaling. However, these inhibitors showed undesired activity on other kinases such as the tyrosine protein kinase receptor TIE or tropomyosin receptor kinases, which are related to angiogenesis and neuronal toxicity. In this study, we optimized our recently published p38 mitogen-activated protein kinase inhibitor 7 toward a potent and cell-active dual DDR/p38 chemical probe and developed a structurally related negative control. The structure-guided design approach used provided insights into the P-loop folding process of p38 and how targeting of non-conserved amino acids modulates inhibitor selectivity. The developed and comprehensively characterized DDR/p38 probe, 30 (SR-302), is a valuable tool for studying the role of DDR kinase in normal physiology and in disease development.
spellingShingle Röhm, S
Berger, B-T
Schröder, M
Chatterjee, D
Mathea, S
Joerger, AC
Pinkas, DM
Bufton, JC
Tjaden, A
Kovooru, L
Kudolo, M
Pohl, C
Bullock, AN
Müller, S
Laufer, S
Knapp, S
Development of a selective dual discoidin domain receptor (DDR)/p38 kinase chemical probe
title Development of a selective dual discoidin domain receptor (DDR)/p38 kinase chemical probe
title_full Development of a selective dual discoidin domain receptor (DDR)/p38 kinase chemical probe
title_fullStr Development of a selective dual discoidin domain receptor (DDR)/p38 kinase chemical probe
title_full_unstemmed Development of a selective dual discoidin domain receptor (DDR)/p38 kinase chemical probe
title_short Development of a selective dual discoidin domain receptor (DDR)/p38 kinase chemical probe
title_sort development of a selective dual discoidin domain receptor ddr p38 kinase chemical probe
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