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Endothelin-1 acutely increases nitric oxide production via the calcineurin mediated dephosphorylation of Caveolin-1

Nitric Oxide, ISSN: 1089-8603, Vol: 140, Page: 50-57
2023
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Article Description

Endothelin (ET)-1 is an endothelial-derived peptide that exerts biphasic effects on nitric oxide (NO) levels in endothelial cells such that acute exposure stimulates-while sustained exposure attenuates-NO production. Although the mechanism involved in the decrease in NO generation has been identified but the signaling involved in the acute increase in NO is still unresolved. This was the focus of this study. Our data indicate that exposing pulmonary arterial endothelial cells (PAEC) to ET-1 led to an increase in NO for up to 30min after which levels declined. These effects were attenuated by ET receptor antagonists. The increase in NO correlated with significant increases in pp60 Src activity and increases in eNOS phosphorylation at Tyr83 and Ser1177. The ET-1 mediated increase in phosphorylation and NO generation were attenuated by the over-expression of a pp60 Src dominant negative mutant. The increase in pp60 Src activity correlated with a reduction in the interaction of Caveolin-1 with pp60 Src and the calcineurin-mediated dephosphorylation of caveolin-1 at three previously unidentified sites: Thr91, Thr93, and Thr95. The calcineurin inhibitor, Tacrolimus, attenuated the acute increase in pp60 Src activity induced by ET-1 and a calcineurin siRNA attenuated the ET-1 mediated increase in eNOS phosphorylation at Tyr83 and Ser1177 as well as the increase in NO. By using a Caveolin-1 celluSpot peptide array, we identified a peptide targeting a sequence located between aa 41–56 as the pp60 Src binding region. This peptide fused to the TAT sequence was found to decrease caveolin-pp60 Src interaction, increased pp60 Src activity, increased eNOS pSer1177 and NO levels in PAEC and induce vasodilation in isolated aortic rings in wildtype but not eNOS knockout mice. Together, our data identify a novel mechanism by which ET-1 acutely increases NO via a calcineurin-mediated dephosphorylation of caveolin-1 and the subsequent stimulation of pp60 Src activity, leading to increases in phosphorylation of eNOS at Tyr83 and Ser1177.

Bibliographic Details

Yegambaram, Manivannan; Kumar, Sanjiv; Wu, Xiaomin; Lu, Qing; Sun, Xutong; Garcia Flores, Alejandro; Meadows, Mary Louise; Barman, Scott; Fulton, David; Wang, Ting; Fineman, Jeffrey R; Black, Stephen M

Elsevier BV

Biochemistry, Genetics and Molecular Biology

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