Cargando…
2-Aminomethylene-5-sulfonylthiazole Inhibitors of Lysyl Oxidase (LOX) and LOXL2 Show Significant Efficacy in Delaying Tumor Growth
[Image: see text] The lysyl oxidase (LOX) family of extracellular proteins plays a vital role in catalyzing the formation of cross-links in fibrillar elastin and collagens leading to extracellular matrix (ECM) stabilization. These enzymes have also been implicated in tumor progression and metastatic...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical
Society
2019
|
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7073924/ https://www.ncbi.nlm.nih.gov/pubmed/31430136 http://dx.doi.org/10.1021/acs.jmedchem.9b01112 |
_version_ | 1783506722266021888 |
---|---|
author | Smithen, Deborah A. Leung, Leo M. H. Challinor, Mairi Lawrence, Rae Tang, HaoRan Niculescu-Duvaz, Dan Pearce, Simon P. Mcleary, Robert Lopes, Filipa Aljarah, Mohammed Brown, Michael Johnson, Louise Thomson, Graeme Marais, Richard Springer, Caroline |
author_facet | Smithen, Deborah A. Leung, Leo M. H. Challinor, Mairi Lawrence, Rae Tang, HaoRan Niculescu-Duvaz, Dan Pearce, Simon P. Mcleary, Robert Lopes, Filipa Aljarah, Mohammed Brown, Michael Johnson, Louise Thomson, Graeme Marais, Richard Springer, Caroline |
author_sort | Smithen, Deborah A. |
collection | PubMed |
description | [Image: see text] The lysyl oxidase (LOX) family of extracellular proteins plays a vital role in catalyzing the formation of cross-links in fibrillar elastin and collagens leading to extracellular matrix (ECM) stabilization. These enzymes have also been implicated in tumor progression and metastatic disease and have thus become an attractive therapeutic target for many types of invasive cancers. Following our recently published work on the discovery of aminomethylenethiophenes (AMTs) as potent, orally bioavailable LOX/LOXL2 inhibitors, we report herein the discovery of a series of dual LOX/LOXL2 inhibitors, as well as a subseries of LOXL2-selective inhibitors, bearing an aminomethylenethiazole (AMTz) scaffold. Incorporation of a thiazole core leads to improved potency toward LOXL2 inhibition via an irreversible binding mode of inhibition. SAR studies have enabled the discovery of a predictive 3DQSAR model. Lead AMTz inhibitors exhibit improved pharmacokinetic properties and excellent antitumor efficacy, with significantly reduced tumor growth in a spontaneous breast cancer genetically engineered mouse model. |
format | Online Article Text |
id | pubmed-7073924 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | American Chemical
Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-70739242020-03-17 2-Aminomethylene-5-sulfonylthiazole Inhibitors of Lysyl Oxidase (LOX) and LOXL2 Show Significant Efficacy in Delaying Tumor Growth Smithen, Deborah A. Leung, Leo M. H. Challinor, Mairi Lawrence, Rae Tang, HaoRan Niculescu-Duvaz, Dan Pearce, Simon P. Mcleary, Robert Lopes, Filipa Aljarah, Mohammed Brown, Michael Johnson, Louise Thomson, Graeme Marais, Richard Springer, Caroline J Med Chem [Image: see text] The lysyl oxidase (LOX) family of extracellular proteins plays a vital role in catalyzing the formation of cross-links in fibrillar elastin and collagens leading to extracellular matrix (ECM) stabilization. These enzymes have also been implicated in tumor progression and metastatic disease and have thus become an attractive therapeutic target for many types of invasive cancers. Following our recently published work on the discovery of aminomethylenethiophenes (AMTs) as potent, orally bioavailable LOX/LOXL2 inhibitors, we report herein the discovery of a series of dual LOX/LOXL2 inhibitors, as well as a subseries of LOXL2-selective inhibitors, bearing an aminomethylenethiazole (AMTz) scaffold. Incorporation of a thiazole core leads to improved potency toward LOXL2 inhibition via an irreversible binding mode of inhibition. SAR studies have enabled the discovery of a predictive 3DQSAR model. Lead AMTz inhibitors exhibit improved pharmacokinetic properties and excellent antitumor efficacy, with significantly reduced tumor growth in a spontaneous breast cancer genetically engineered mouse model. American Chemical Society 2019-08-20 2020-03-12 /pmc/articles/PMC7073924/ /pubmed/31430136 http://dx.doi.org/10.1021/acs.jmedchem.9b01112 Text en Copyright © 2019 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited. |
spellingShingle | Smithen, Deborah A. Leung, Leo M. H. Challinor, Mairi Lawrence, Rae Tang, HaoRan Niculescu-Duvaz, Dan Pearce, Simon P. Mcleary, Robert Lopes, Filipa Aljarah, Mohammed Brown, Michael Johnson, Louise Thomson, Graeme Marais, Richard Springer, Caroline 2-Aminomethylene-5-sulfonylthiazole Inhibitors of Lysyl Oxidase (LOX) and LOXL2 Show Significant Efficacy in Delaying Tumor Growth |
title | 2-Aminomethylene-5-sulfonylthiazole
Inhibitors
of Lysyl Oxidase (LOX) and LOXL2 Show Significant Efficacy in Delaying
Tumor Growth |
title_full | 2-Aminomethylene-5-sulfonylthiazole
Inhibitors
of Lysyl Oxidase (LOX) and LOXL2 Show Significant Efficacy in Delaying
Tumor Growth |
title_fullStr | 2-Aminomethylene-5-sulfonylthiazole
Inhibitors
of Lysyl Oxidase (LOX) and LOXL2 Show Significant Efficacy in Delaying
Tumor Growth |
title_full_unstemmed | 2-Aminomethylene-5-sulfonylthiazole
Inhibitors
of Lysyl Oxidase (LOX) and LOXL2 Show Significant Efficacy in Delaying
Tumor Growth |
title_short | 2-Aminomethylene-5-sulfonylthiazole
Inhibitors
of Lysyl Oxidase (LOX) and LOXL2 Show Significant Efficacy in Delaying
Tumor Growth |
title_sort | 2-aminomethylene-5-sulfonylthiazole
inhibitors
of lysyl oxidase (lox) and loxl2 show significant efficacy in delaying
tumor growth |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7073924/ https://www.ncbi.nlm.nih.gov/pubmed/31430136 http://dx.doi.org/10.1021/acs.jmedchem.9b01112 |
work_keys_str_mv | AT smithendeboraha 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT leungleomh 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT challinormairi 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT lawrencerae 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT tanghaoran 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT niculescuduvazdan 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT pearcesimonp 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT mclearyrobert 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT lopesfilipa 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT aljarahmohammed 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT brownmichael 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT johnsonlouise 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT thomsongraeme 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT maraisrichard 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth AT springercaroline 2aminomethylene5sulfonylthiazoleinhibitorsoflysyloxidaseloxandloxl2showsignificantefficacyindelayingtumorgrowth |