C/EBPβ and Nuclear Factor of Activated T Cells Differentially Regulate Adamts-1 Induction by Stimuli Associated with Vascular Remodeling
Author(s) -
Jorge Oller,
Arántzazu Alfranca,
Nerea MéndezBarbero,
Silvia Villahoz,
Noelia LozanoVidal,
Mara Martín-Alonso,
Alicia G. Arroyo,
Amelia Escolano,
Angel L. Armesilla,
Miguel R. Campanero,
Juan Miguel Redondo
Publication year - 2015
Publication title -
molecular and cellular biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.14
H-Index - 327
eISSN - 1067-8824
pISSN - 0270-7306
DOI - 10.1128/mcb.00494-15
Subject(s) - nfat , downregulation and upregulation , biology , angiotensin ii , adamts , microbiology and biotechnology , signal transduction , transcription factor , vascular endothelial growth factor , vascular smooth muscle , vascular endothelial growth factor a , cancer research , endocrinology , metalloproteinase , matrix metalloproteinase , biochemistry , thrombospondin , smooth muscle , gene , blood pressure , vegf receptors
Emerging evidence indicates that the metalloproteinase Adamts-1 plays a significant role in the pathophysiology of vessel remodeling, but little is known about the signaling pathways that control Adamts-1 expression. We show that vascular endothelial growth factor (VEGF), angiotensin-II, interleukin-1β, and tumor necrosis factor α, stimuli implicated in pathological vascular remodeling, increase Adamts-1 expression in endothelial and vascular smooth muscle cells. Analysis of the intracellular signaling pathways implicated in this process revealed that VEGF and angiotensin-II upregulate Adamts-1 expression via activation of differential signaling pathways that ultimately promote functional binding of the NFAT or C/EBPβ transcription factors, respectively, to the Adamts-1 promoter. Infusion of mice with angiotensin-II triggered phosphorylation and nuclear translocation of C/EBPβ proteins in aortic cells concomitantly with an increase in the expression of Adamts-1, further underscoring the importance of C/EBPβ signaling in angiotensin-II-induced upregulation of Adamts-1. Similarly, VEGF promoted NFAT activation and subsequent Adamts-1 induction in aortic wall in a calcineurin-dependent manner. Our results demonstrate that Adamts-1 upregulation by inducers of pathological vascular remodeling is mediated by specific signal transduction pathways involving NFAT or C/EBPβ transcription factors. Targeting of these pathways may prove useful in the treatment of vascular disease.
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