12-Lipoxygenase governs the innate immune pathogenesis of islet inflammation and autoimmune diabetes.
Animals
Animals, Genetically Modified
Arachidonate 12-Lipoxygenase
/ genetics
Arachidonate 15-Lipoxygenase
/ genetics
Diabetes Mellitus, Type 1
/ immunology
Disease Models, Animal
Female
Humans
Immunity, Innate
Insulin-Secreting Cells
/ enzymology
Male
Mice
Primary Cell Culture
Receptors, CXCR3
/ genetics
Zebrafish
Zebrafish Proteins
/ genetics
Autoimmunity
Diabetes
Endocrinology
Islet cells
Macrophages
Journal
JCI insight
ISSN: 2379-3708
Titre abrégé: JCI Insight
Pays: United States
ID NLM: 101676073
Informations de publication
Date de publication:
22 07 2021
22 07 2021
Historique:
received:
19
01
2021
accepted:
10
06
2021
pubmed:
16
6
2021
medline:
26
2
2022
entrez:
15
6
2021
Statut:
epublish
Résumé
Macrophages and related myeloid cells are innate immune cells that participate in the early islet inflammation of type 1 diabetes (T1D). The enzyme 12-lipoxygenase (12-LOX) catalyzes the formation of proinflammatory eicosanoids, but its role and mechanisms in myeloid cells in the pathogenesis of islet inflammation have not been elucidated. Leveraging a model of islet inflammation in zebrafish, we show here that macrophages contribute significantly to the loss of β cells and the subsequent development of hyperglycemia. The depletion or inhibition of 12-LOX in this model resulted in reduced macrophage infiltration into islets and the preservation of β cell mass. In NOD mice, the deletion of the gene encoding 12-LOX in the myeloid lineage resulted in reduced insulitis with reductions in proinflammatory macrophages, a suppressed T cell response, preserved β cell mass, and almost complete protection from the development of T1D. 12-LOX depletion caused a defect in myeloid cell migration, a function required for immune surveillance and tissue injury responses. This effect on migration resulted from the loss of the chemokine receptor CXCR3. Transgenic expression of the gene encoding CXCR3 rescued the migratory defect in zebrafish 12-LOX morphants. Taken together, our results reveal a formative role for innate immune cells in the early pathogenesis of T1D and identify 12-LOX as an enzyme required to promote their prodiabetogenic phenotype in the context of autoimmunity.
Identifiants
pubmed: 34128835
pii: e147812
doi: 10.1172/jci.insight.147812
pmc: PMC8410073
doi:
pii:
Substances chimiques
Receptors, CXCR3
0
Zebrafish Proteins
0
Alox15 protein, mouse
EC 1.13.11.31
Arachidonate 12-Lipoxygenase
EC 1.13.11.31
Arachidonate 15-Lipoxygenase
EC 1.13.11.33
Types de publication
Journal Article
Research Support, N.I.H., Extramural
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Subventions
Organisme : NIDDK NIH HHS
ID : F30 DK122681
Pays : United States
Organisme : NIDDK NIH HHS
ID : P30 DK097512
Pays : United States
Organisme : NIDDK NIH HHS
ID : R01 DK105588
Pays : United States
Organisme : NIDDK NIH HHS
ID : P30 DK020595
Pays : United States
Organisme : NIDDK NIH HHS
ID : U01 DK127786
Pays : United States
Organisme : NIDDK NIH HHS
ID : R01 DK060581
Pays : United States
Références
FASEB J. 2018 May 29;:fj201800150RR
pubmed: 29812970
Semin Immunopathol. 2014 Sep;36(5):569-79
pubmed: 25005747
Blood. 2011 Jan 27;117(4):e49-56
pubmed: 21084707
PLoS One. 2018 Mar 9;13(3):e0194048
pubmed: 29522531
Pharmacol Ther. 2019 Mar;195:100-110
pubmed: 30347209
J Med Chem. 1992 May 15;35(10):1818-28
pubmed: 1316967
J Immunol Methods. 1994 Sep 14;174(1-2):83-93
pubmed: 8083541
Diabetes. 2018 Jun;67(6):1035-1042
pubmed: 29784651
Nat Rev Endocrinol. 2020 Jul;16(7):349-362
pubmed: 32398822
Annu Rev Immunol. 2005;23:447-85
pubmed: 15771578
Development. 2015 Apr 15;142(8):1407-17
pubmed: 25852199
Front Endocrinol (Lausanne). 2020 Aug 19;11:569
pubmed: 32973682
Proc Natl Acad Sci U S A. 2015 Feb 3;112(5):1511-6
pubmed: 25605891
J Exp Med. 1999 Jan 18;189(2):347-58
pubmed: 9892617
Mediators Inflamm. 2012;2012:851798
pubmed: 23326022
Nat Protoc. 2008;3(6):948-54
pubmed: 18536643
Proc Natl Acad Sci U S A. 2017 Nov 28;114(48):E10418-E10427
pubmed: 29133420
Diabetes. 1994 May;43(5):667-75
pubmed: 8168644
Curr Top Dev Biol. 2017;124:235-276
pubmed: 28335861
J Exp Med. 2017 Aug 7;214(8):2369-2385
pubmed: 28630088
Diabetes. 2008 Jan;57(1):199-208
pubmed: 17940120
Diabetes. 2019 Aug;68(8):1544-1551
pubmed: 31331989
Diabetologia. 2012 Aug;55(8):2238-45
pubmed: 22487925
Am J Pathol. 2006 Dec;169(6):2137-47
pubmed: 17148676
Cell Metab. 2019 Feb 5;29(2):457-474.e5
pubmed: 30595478
J Biol Chem. 2001 Apr 13;276(15):12454-9
pubmed: 11278893
Mech Dev. 2007 Mar;124(3):218-29
pubmed: 17223324
Development. 2014 Jul;141(13):2581-91
pubmed: 24961798
Diabetes. 1988 Jul;37(7):989-91
pubmed: 2838359
J Vis Exp. 2010 Jan 28;(35):
pubmed: 20110936
Lab Invest. 2000 Jan;80(1):23-30
pubmed: 10652999
Diabetes Obes Metab. 2007 Nov;9 Suppl 2:14-22
pubmed: 17919174
Cell Death Dis. 2017 Aug 10;8(8):e2979
pubmed: 28796253
Diabetes. 2017 Nov;66(11):2875-2887
pubmed: 28842399
Nat Rev Endocrinol. 2009 Apr;5(4):219-26
pubmed: 19352320
Biofactors. 2016 Nov 12;42(6):703-715
pubmed: 27325565
FASEB J. 2020 Nov;34(11):14850-14862
pubmed: 32918516
PLoS One. 2013;8(2):e56763
pubmed: 23437231
Biomolecules. 2021 May 11;11(5):
pubmed: 34064822
Diabetes. 1999 Jan;48(1):34-42
pubmed: 9892220
J Vis Exp. 2012 Sep 07;(67):
pubmed: 22987198
Cancer Metastasis Rev. 2011 Dec;30(3-4):277-94
pubmed: 22002716
Clin Exp Immunol. 2010 May;160(2):176-84
pubmed: 20629979
Mol Cell Biol. 2014 Oct 1;34(19):3735-45
pubmed: 25071151
Oxid Med Cell Longev. 2018 Mar 28;2018:1324739
pubmed: 29785241
Lab Invest. 2001 Mar;81(3):409-18
pubmed: 11310833
iScience. 2020 Jan 24;23(1):100775
pubmed: 31962237
Clin Exp Metastasis. 2003;20(7):657-63
pubmed: 14669797
Proc Natl Acad Sci U S A. 2014 Apr 1;111(13):E1211-20
pubmed: 24639504
Crit Care. 2012 Sep 13;16(5):R166
pubmed: 22973824
Front Immunol. 2019 May 24;10:1084
pubmed: 31178859
Mol Genet Metab. 2007 Sep-Oct;92(1-2):43-55
pubmed: 17659992
Clin Exp Immunol. 2013 Jun;172(3):375-82
pubmed: 23600825