ACE as a mechanosensor to shear stress influences the control of its own regulation via phosphorylation of cytoplasmic ser 1270

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Abstract

Objectives: We tested whether angiotensin converting enzyme (ACE) and phosphorylation of Ser 1270 are involved in shear-stress (SS)-induced downregulation of the enzyme. Methods and Results: Western blotting analysis showed that SS (18 h, 15 dyn/cm 2) decreases ACE expression and phosphorylation as well as p-JNK inhibition in human primary endothelial cells (EC). CHO cells expressing wild-type ACE (wt-ACE) also displayed SS-induced decrease in ACE and p-JNK. Moreover, SS decreased ACE promoter activity in wt-ACE, but had no effect in wild type CHO or CHO expressing ACE without either the extra- or the intracellular domains, and decreased less in CHO expressing a mutated ACE at Ser 1270 compared to wt-ACE (13 vs. 40%, respectively). The JNK inhibitor (SP600125, 18 h), in absence of SS, also decreased ACE promoter activity in wt-ACE. Finally, SS-induced inhibition of ACE expression and phosphorylation in EC was counteracted by simultaneous exposure to an ACE inhibitor. Conclusions: ACE displays a key role on its own downregulation in response to SS. This response requires both the extra- and the intracellular domains and ACE Ser 1270, consistent with the idea that the extracellular domain behaves as a mechanosensor while the cytoplasmic domain elicits the downstream intracellular signaling by phosphorylation on Ser 1270. © 2011 Barauna et al.

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Barauna, V. G., Campos, L. C. G., Miyakawa, A. A., & Krieger, J. E. (2011). ACE as a mechanosensor to shear stress influences the control of its own regulation via phosphorylation of cytoplasmic ser 1270. PLoS ONE, 6(8). https://doi.org/10.1371/journal.pone.0022803

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