Flipping the cyclooxygenase (Ptgs) genes reveals isoform-specific compensatory functions

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Abstract

Two prostaglandin (PG) H synthases encoded by Ptgs genes, colloquially known as cyclooxygenase (COX)-1 and COX-2, catalyze the formation of PG endoperoxide H2, the precursor of the major prostanoids. To address the functional interchangeability of these two isoforms and their distinct roles, we have generated COX-2>COX-1 mice whereby Ptgs2 is knocked in to the Ptgs1 locus. We then "flipped" Ptgs genes to successfully create the Reversa mouse strain, where knock-in COX-2 is expressed constitutively and knock-in COX-1 is lipopolysaccharide (LPS) inducible. In macrophages, flipping the two Ptgs genes has no obvious impact on COX protein subcellular localization. COX-1 was shown to compensate for PG synthesis at high concentrations of substrate, whereas elevated LPS-induced PG production was only observed for cells expressing endogenous COX-2. Differential tissue-specific patterns of expression of the knockin proteins were evident. Thus, platelets from COX-2>COX-1 and Reversa mice failed to express knock-in COX-2 and, therefore, thromboxane (Tx) production in vitro and urinary Tx metabolite formation in COX-2>COX-1 and Reversa mice in vivo were substantially decreased relative to WT and COX-1>COX-2 mice. Manipulation of COXs revealed isoform- specific compensatory functions and variable degrees of interchangeability for PG biosynthesis in cells/tissues.- Li, X., L. L. Mazaleuskaya, C. Yuan, L. L. Ballantyne, H. Meng, W. L. Smith, G. A. FitzGerald, and C. D. Funk. Flipping the cyclooxygenase (Ptgs) genes reveals isoform-specific compensatory functions.

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Li, X., Mazaleuskaya, L. L., Yuan, C., Ballantyne, L. L., Meng, H., Smith, W. L., … Funk, C. D. (2018). Flipping the cyclooxygenase (Ptgs) genes reveals isoform-specific compensatory functions. Journal of Lipid Research, 59(1), 89–101. https://doi.org/10.1194/jlr.M079996

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