Steroid binding to Autotaxin links bile salts and lysophosphatidic acid signalling

Autotaxin generates the bioactive lipid lysophosphatidic acid to regulate diverse biological processes. Here, the authors identify a role for bile salts as direct allosteric inhibitors of autotaxin activity, suggesting that steroids may function as regulators of lysophosphatidic acid signalling.

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Autores principales: Willem-Jan Keune, Jens Hausmann, Ruth Bolier, Dagmar Tolenaars, Andreas Kremer, Tatjana Heidebrecht, Robbie P. Joosten, Manjula Sunkara, Andrew J. Morris, Elisa Matas-Rico, Wouter H. Moolenaar, Ronald P. Oude Elferink, Anastassis Perrakis
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/2ccdbeab88fd47eba8cb69bd11c92811
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spelling oai:doaj.org-article:2ccdbeab88fd47eba8cb69bd11c928112021-12-02T16:56:45ZSteroid binding to Autotaxin links bile salts and lysophosphatidic acid signalling10.1038/ncomms112482041-1723https://doaj.org/article/2ccdbeab88fd47eba8cb69bd11c928112016-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms11248https://doaj.org/toc/2041-1723Autotaxin generates the bioactive lipid lysophosphatidic acid to regulate diverse biological processes. Here, the authors identify a role for bile salts as direct allosteric inhibitors of autotaxin activity, suggesting that steroids may function as regulators of lysophosphatidic acid signalling.Willem-Jan KeuneJens HausmannRuth BolierDagmar TolenaarsAndreas KremerTatjana HeidebrechtRobbie P. JoostenManjula SunkaraAndrew J. MorrisElisa Matas-RicoWouter H. MoolenaarRonald P. Oude ElferinkAnastassis PerrakisNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Willem-Jan Keune
Jens Hausmann
Ruth Bolier
Dagmar Tolenaars
Andreas Kremer
Tatjana Heidebrecht
Robbie P. Joosten
Manjula Sunkara
Andrew J. Morris
Elisa Matas-Rico
Wouter H. Moolenaar
Ronald P. Oude Elferink
Anastassis Perrakis
Steroid binding to Autotaxin links bile salts and lysophosphatidic acid signalling
description Autotaxin generates the bioactive lipid lysophosphatidic acid to regulate diverse biological processes. Here, the authors identify a role for bile salts as direct allosteric inhibitors of autotaxin activity, suggesting that steroids may function as regulators of lysophosphatidic acid signalling.
format article
author Willem-Jan Keune
Jens Hausmann
Ruth Bolier
Dagmar Tolenaars
Andreas Kremer
Tatjana Heidebrecht
Robbie P. Joosten
Manjula Sunkara
Andrew J. Morris
Elisa Matas-Rico
Wouter H. Moolenaar
Ronald P. Oude Elferink
Anastassis Perrakis
author_facet Willem-Jan Keune
Jens Hausmann
Ruth Bolier
Dagmar Tolenaars
Andreas Kremer
Tatjana Heidebrecht
Robbie P. Joosten
Manjula Sunkara
Andrew J. Morris
Elisa Matas-Rico
Wouter H. Moolenaar
Ronald P. Oude Elferink
Anastassis Perrakis
author_sort Willem-Jan Keune
title Steroid binding to Autotaxin links bile salts and lysophosphatidic acid signalling
title_short Steroid binding to Autotaxin links bile salts and lysophosphatidic acid signalling
title_full Steroid binding to Autotaxin links bile salts and lysophosphatidic acid signalling
title_fullStr Steroid binding to Autotaxin links bile salts and lysophosphatidic acid signalling
title_full_unstemmed Steroid binding to Autotaxin links bile salts and lysophosphatidic acid signalling
title_sort steroid binding to autotaxin links bile salts and lysophosphatidic acid signalling
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/2ccdbeab88fd47eba8cb69bd11c92811
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