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Type I collagen proteolysis by matrix metalloproteinase-2 contributes to focal adhesion kinase activation and vascular smooth muscle cell proliferation in the aorta in early hypertension

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Author(s):
de Oliveira Neves, Viviano Gomes ; de Mello, Marcela M. Blascke ; Rodrigues, Daniel ; Pernomian, Laena ; de Oliveira, Isadora Sousa ; Parente, Juliana M. ; Arantes, Eliane Candiani ; Tostes, Rita C. ; Castro, Michele M.
Total Authors: 9
Document type: Journal article
Source: VASCULAR PHARMACOLOGY; v. 152, p. 9-pg., 2023-10-01.
Abstract

Introduction: Increased matrix metalloproteinase (MMP)-2 activity contributes to increase vascular smooth muscle cell (VSMC) proliferation in the aorta in early hypertension by cleaving many proteins of the extracellular matrix. Cleaved products from type I collagen may activate focal adhesion kinases (FAK) that trigger migration and proliferation signals in VSMC. We therefore hypothesized that increased activity of MMP-2 proteolyzes type I collagen in aortas of hypertensive rats, and thereby, induces FAK activation, thus leading to increased VSMC proliferation and hypertrophic remodeling in early hypertension.Methods: Male Sprague-Dawley rats were submitted to renovascular hypertension by the two kidney-one clip (2K1C) model and treated with doxycycline (30 mg/kg/day) by gavage from the third to seventh-day postsurgery. Controls were submitted to sham surgery. Systolic blood pressure (SBP) was measured daily by tail-cuff plethysmography and the aortas were processed for zymography and Western blot for MMP-2, pFAK/FAK, integrins and type I collagen. Mass spectrometry, morphological analysis and Ki67 immunofluorescence were also done to identify collagen changes and VSMC proliferation. A7r5 cells were stimulated with collagen and treated with the MMP inhibitors (doxycycline or ARP-100), and with the FAK inhibitor PND1186 for 24 h. Cells were lysed and evaluated by Western blot for pFAK/FAK.Results: 2K1C rats developed elevated SBP in the first week as well as increased expression and activity of MMP-2 in the aorta (p < 0.05 vs. Sham). Treatment with doxycycline reduced both MMP activity and type I collagen proteolysis in aortas of 2K1C rats (p < 0.05). Increased pFAK/FAK and increased VSMC proliferation (p < 0.05 vs. Sham groups) were also seen in the aortas of 2K1C and doxycycline decreased both parameters (p < 0.05). Higher proliferation of VSMC contributed to hypertrophic remodeling as seen by increased media/lumen ratio and cross sectional area (p < 0.05 vs Sham groups). In cell culture, MMP-2 cleaves collagen, an effect reversed by MMP inhibitors (p < 0.05). Increased levels of pFAK/FAK were observed when collagen was added in the culture medium (p < 0.05 vs control) and MMP and FAK inhibitors reduced this effect.Conclusions: Increase in MMP-2 activity proteolyzes type I collagen in the aortas of 2K1C rats and contributes to activate FAK and induces VSMC proliferation during the initial phase of hypertension. (AU)

FAPESP's process: 19/10173-6 - Production, modification and characterization of animal toxins with potential biotechnological application
Grantee:Eliane Candiani Arantes Braga
Support Opportunities: Regular Research Grants
FAPESP's process: 20/13176-3 - Human monoclonal antibodies (scFv) discovery with cross-reactivity and pH-dependent to metalloproteases from Bothrops spp
Grantee:Isadora Sousa de Oliveira
Support Opportunities: Scholarships in Brazil - Post-Doctoral
FAPESP's process: 19/09174-8 - Extra- and intracellular activation of matrix metalloproteinase-2 by oxidative stress in arterial hypertension-induced vascular remodeling via extracellular matrix dependent- and independent mechanisms
Grantee:Michele Mazzaron de Castro
Support Opportunities: Regular Research Grants