Cargando…

Humanization of the Reaction Specificity of Mouse Alox15b Inversely Modified the Susceptibility of Corresponding Knock-In Mice in Two Different Animal Inflammation Models

Mammalian arachidonic acid lipoxygenases (ALOXs) have been implicated in the pathogenesis of inflammatory diseases, and its pro- and anti-inflammatory effects have been reported for different ALOX-isoforms. Human ALOX15B oxygenates arachidonic acid to its 15-hydroperoxy derivative, whereas the corre...

Descripción completa

Detalles Bibliográficos
Autores principales: Schäfer, Marjann, Reisch, Florian, Labuz, Dominika, Machelska, Halina, Stehling, Sabine, Püschel, Gerhard P., Rothe, Michael, Heydeck, Dagmar, Kuhn, Hartmut
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10341735/
https://www.ncbi.nlm.nih.gov/pubmed/37446212
http://dx.doi.org/10.3390/ijms241311034
_version_ 1785072332566429696
author Schäfer, Marjann
Reisch, Florian
Labuz, Dominika
Machelska, Halina
Stehling, Sabine
Püschel, Gerhard P.
Rothe, Michael
Heydeck, Dagmar
Kuhn, Hartmut
author_facet Schäfer, Marjann
Reisch, Florian
Labuz, Dominika
Machelska, Halina
Stehling, Sabine
Püschel, Gerhard P.
Rothe, Michael
Heydeck, Dagmar
Kuhn, Hartmut
author_sort Schäfer, Marjann
collection PubMed
description Mammalian arachidonic acid lipoxygenases (ALOXs) have been implicated in the pathogenesis of inflammatory diseases, and its pro- and anti-inflammatory effects have been reported for different ALOX-isoforms. Human ALOX15B oxygenates arachidonic acid to its 15-hydroperoxy derivative, whereas the corresponding 8-hydroperoxide is formed by mouse Alox15b (Alox8). This functional difference impacts the biosynthetic capacity of the two enzymes for creating pro- and anti-inflammatory eicosanoids. To explore the functional consequences of the humanization of the reaction specificity of mouse Alox15b in vivo, we tested Alox15b knock-in mice that express the arachidonic acid 15-lipoxygenating Tyr603Asp and His604Val double mutant of Alox15b, instead of the arachidonic acid 8-lipoxygenating wildtype enzyme, in two different animal inflammation models. In the dextran sodium sulfate-induced colitis model, female Alox15b-KI mice lost significantly more bodyweight during the acute phase of inflammation and recovered less rapidly during the resolution phase. Although we observed significant differences in the colonic levels of selected pro- and anti-inflammatory eicosanoids during the time-course of inflammation, there were no differences between the two genotypes at any time-point of the disease. In Freund’s complete adjuvant-induced paw edema model, Alox15b-KI mice were less susceptible than outbred wildtype controls, though we did not observe significant differences in pain perception (Hargreaves-test, von Frey-test) when the two genotypes were compared. our data indicate that humanization of the reaction specificity of mouse Alox15b (Alox8) sensitizes mice for dextran sodium sulfate-induced experimental colitis, but partly protects the animals in the complete Freund’s adjuvant-induced paw edema model.
format Online
Article
Text
id pubmed-10341735
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-103417352023-07-14 Humanization of the Reaction Specificity of Mouse Alox15b Inversely Modified the Susceptibility of Corresponding Knock-In Mice in Two Different Animal Inflammation Models Schäfer, Marjann Reisch, Florian Labuz, Dominika Machelska, Halina Stehling, Sabine Püschel, Gerhard P. Rothe, Michael Heydeck, Dagmar Kuhn, Hartmut Int J Mol Sci Article Mammalian arachidonic acid lipoxygenases (ALOXs) have been implicated in the pathogenesis of inflammatory diseases, and its pro- and anti-inflammatory effects have been reported for different ALOX-isoforms. Human ALOX15B oxygenates arachidonic acid to its 15-hydroperoxy derivative, whereas the corresponding 8-hydroperoxide is formed by mouse Alox15b (Alox8). This functional difference impacts the biosynthetic capacity of the two enzymes for creating pro- and anti-inflammatory eicosanoids. To explore the functional consequences of the humanization of the reaction specificity of mouse Alox15b in vivo, we tested Alox15b knock-in mice that express the arachidonic acid 15-lipoxygenating Tyr603Asp and His604Val double mutant of Alox15b, instead of the arachidonic acid 8-lipoxygenating wildtype enzyme, in two different animal inflammation models. In the dextran sodium sulfate-induced colitis model, female Alox15b-KI mice lost significantly more bodyweight during the acute phase of inflammation and recovered less rapidly during the resolution phase. Although we observed significant differences in the colonic levels of selected pro- and anti-inflammatory eicosanoids during the time-course of inflammation, there were no differences between the two genotypes at any time-point of the disease. In Freund’s complete adjuvant-induced paw edema model, Alox15b-KI mice were less susceptible than outbred wildtype controls, though we did not observe significant differences in pain perception (Hargreaves-test, von Frey-test) when the two genotypes were compared. our data indicate that humanization of the reaction specificity of mouse Alox15b (Alox8) sensitizes mice for dextran sodium sulfate-induced experimental colitis, but partly protects the animals in the complete Freund’s adjuvant-induced paw edema model. MDPI 2023-07-03 /pmc/articles/PMC10341735/ /pubmed/37446212 http://dx.doi.org/10.3390/ijms241311034 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Schäfer, Marjann
Reisch, Florian
Labuz, Dominika
Machelska, Halina
Stehling, Sabine
Püschel, Gerhard P.
Rothe, Michael
Heydeck, Dagmar
Kuhn, Hartmut
Humanization of the Reaction Specificity of Mouse Alox15b Inversely Modified the Susceptibility of Corresponding Knock-In Mice in Two Different Animal Inflammation Models
title Humanization of the Reaction Specificity of Mouse Alox15b Inversely Modified the Susceptibility of Corresponding Knock-In Mice in Two Different Animal Inflammation Models
title_full Humanization of the Reaction Specificity of Mouse Alox15b Inversely Modified the Susceptibility of Corresponding Knock-In Mice in Two Different Animal Inflammation Models
title_fullStr Humanization of the Reaction Specificity of Mouse Alox15b Inversely Modified the Susceptibility of Corresponding Knock-In Mice in Two Different Animal Inflammation Models
title_full_unstemmed Humanization of the Reaction Specificity of Mouse Alox15b Inversely Modified the Susceptibility of Corresponding Knock-In Mice in Two Different Animal Inflammation Models
title_short Humanization of the Reaction Specificity of Mouse Alox15b Inversely Modified the Susceptibility of Corresponding Knock-In Mice in Two Different Animal Inflammation Models
title_sort humanization of the reaction specificity of mouse alox15b inversely modified the susceptibility of corresponding knock-in mice in two different animal inflammation models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10341735/
https://www.ncbi.nlm.nih.gov/pubmed/37446212
http://dx.doi.org/10.3390/ijms241311034
work_keys_str_mv AT schafermarjann humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels
AT reischflorian humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels
AT labuzdominika humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels
AT machelskahalina humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels
AT stehlingsabine humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels
AT puschelgerhardp humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels
AT rothemichael humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels
AT heydeckdagmar humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels
AT kuhnhartmut humanizationofthereactionspecificityofmousealox15binverselymodifiedthesusceptibilityofcorrespondingknockinmiceintwodifferentanimalinflammationmodels