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Upregulation of Cyclooxygenase-2/Prostaglandin E2(COX-2/PGE2) Pathway Member Multiple Drug Resistance-Associated Protein 4 (MRP4) and Downregulation of Prostaglandin Transporter (PGT) and 15-Prostaglandin Dehydrogenase (15-PGDH) in Triple-Negative Breast Cancer
Author(s) -
Tyler Kochel,
Olga Goloubeva,
Amy M. Fulton
Publication year - 2016
Publication title -
breast cancer basic and clinical research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.741
H-Index - 23
ISSN - 1178-2234
DOI - 10.4137/bcbcr.s38529
Subject(s) - downregulation and upregulation , prostaglandin e , prostaglandin , cancer research , cyclooxygenase , prostaglandin e2 receptor , breast cancer , prostaglandin e2 , organic anion transporter 1 , endocrinology , chemistry , cancer , pharmacology , medicine , transporter , biology , receptor , biochemistry , gene , enzyme , agonist
Elevated levels of cyclooxygenase-2 (COX-2) and prostaglandin E2 (PGE2) are indicators of a poor prognosis in breast cancer. Using several independent publicly available breast cancer gene expression databases, we investigated other members of the PGE2 pathway. PGE2 is produced by COX-2 and actively exported by multiple drug resistance-associated protein 4 (MRP4) into the extracellular microenvironment, where PGE2 can bind four cognate EP receptors (EP1-EP4) and initiate diverse biological signaling pathways. Alternatively, PGE2 is imported via the prostaglandin transporter (PGT) and metabolized by 15-prostaglandin dehydrogenase (15-PGDH/HPGD). We made the novel observation that MRP4, PGT, and 15-PGDH are differentially expressed among distinct breast cancer molecular subtypes; this finding was confirmed in independent datasets. In triple-negative breast cancer, the observed gene expression pattern (high COX-2, high MRP4, low PGT, and low 15-PGDH) would favor high levels of tumor-promoting PGE2 in the tumor microenvironment that may contribute to the overall poor prognosis of triple-negative breast cancer.

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