Key result
Angiotensin-(1-7) significantly inhibited diabetes- and high glucose-induced transactivation of ErbB2 and other ErbB receptors via its Mas receptor in rat mesenteric vasculature and cultured cells.
Why the study?
Does Angiotensin-(1-7) reduce ErbB receptor transactivation in diabetes-induced vascular dysfunction models?
Does Angiotensin-(1-7) reduce ErbB receptor transactivation in diabetes-induced vascular dysfunction models?
p-value: p=<0.05
Ang-(1-7) acts as a pan-ErbB inhibitor via its Mas receptor, providing a mechanistic basis for its protective effects against diabetes-induced vascular dysfunction.
Should not change practice in diabetic vasculopathy; hypothesis-generating for Mas-mediated ErbB inhibition in humans.
Transactivation of the epidermal growth factor receptor (EGFR or ErbB) family members, namely EGFR and ErbB2, appears important in the development of diabetes-induced vascular dysfunction. Angiotensin-(1-7) [Ang-(1-7)] can prevent the development of hyperglycemia-induced vascular complications partly through inhibiting EGFR transactivation. Here, we investigated whether Ang-(1-7) can inhibit transactivation of ErbB2 as well as other ErbB receptors in vivo and in vitro. Streptozotocin-induced diabetic rats were chronically treated with Ang-(1-7) or AG825, a selective ErbB2 inhibitor, for 4 weeks and mechanistic studies performed in the isolated mesenteric vasculature bed as well as in cultured vascular smooth muscle cells (VSMCs). Ang-(1-7) or AG825 treatment inhibited diabetes-induced phosphorylation of ErbB2 receptor at tyrosine residues Y1221/22, Y1248, Y877, as well as downstream signaling via ERK1/2, p38 MAPK, ROCK, eNOS and IkB-α in the mesenteric vascular bed. In VSMCs cultured in high glucose (25 mM), Ang-(1-7) inhibited src-dependent ErbB2 transactivation that was opposed by the selective Mas receptor antagonist, D-Pro7-Ang-(1-7). Ang-(1-7) via Mas receptor also inhibited both Angiotensin II- and noradrenaline/norephinephrine-induced transactivation of ErbB2 and/or EGFR receptors. Further, hyperglycemia-induced transactivation of ErbB3 and ErbB4 receptors could be attenuated by Ang-(1-7) that could be prevented by D-Pro7-Ang-(1-7) in VSMC. These data suggest that Ang-(1-7) via its Mas receptor acts as a pan-ErbB inhibitor and might represent a novel general mechanism by which Ang-(1-7) exerts its beneficial effects in many disease states including diabetes-induced vascular complications.
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Akhtar et al. (2015) studied Diabetes-induced vascular dysfunction (n=42). Angiotensin-(1-7) vs. Vehicle/untreated diabetic control was evaluated on Phosphorylation of ErbB2 receptor at tyrosine residues Y1221/22, Y1248, Y877 (p=<0.05). Angiotensin-(1-7) significantly inhibited diabetes- and high glucose-induced transactivation of ErbB2 and other ErbB receptors via its Mas receptor in rat mesenteric vasculature and cultured cells.
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