4.2 Article

Molecular characterization of prostaglandin F receptor (FP) and E receptor subtype 1 (EP1) in zebrafish

期刊

GENERAL AND COMPARATIVE ENDOCRINOLOGY
卷 178, 期 2, 页码 216-226

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ygcen.2012.05.002

关键词

Zebrafish; Prostaglandin receptors; Cloning; Characterization; EP1; FP

资金

  1. Research Grant Council of the Hong Kong Government [HKU7345/03M]
  2. National Natural Science Foundation of China [31172202, 30971569]

向作者/读者索取更多资源

Prostaglandins E (PGE) and F (PGF) mediate diverse physiological functions via their cell surface receptors - prostaglandin E receptor (EP) subtypes 1, 2, 3 and 4 (EP1; EP2; EP3; EP4) and F receptor (FP). In teleost fishes, PGE was implicated in gill epithelium ion transport, while both PGE and PGF were involved in oocyte maturation, follicular rupture and coordination of reproductive behaviors. However, little is known about the mechanisms behind their actions. In present study, we first identified the full-length ORF cDNA clones of three zebrafish prostaglandin E receptor subtype 1 (zEP(1)) isoforms - zEP(1), zEP(1b) and zEP(1c) - and FP (zFP) from adult ovary. RT-PCR showed that zEP(1a), zEP(1b) and zFP are widely expressed in adult tissues, while zEP(1a) mRNA(1b) expression is mainly confined in brain and kidney. Using a pGL3-NFAT-RE luciferase reporter system, both zEP(1a) and zEP(1b) expressed in DF-1 cells were shown to be activated by PGE(2) potently while zEP(1c) and zFP were activated by PGF(2a) effectively, suggesting that the four receptors are functionally coupled to intracellular Ca2+-signaling pathway. Furthermore. EP1a and EP1b, but not EP1c were suggested to couple to cAMP-PKA signaling pathway using a pGL3-CRE luciferase reporter assay. Although zEP(1c) might originate as a paralog to zEP(1a) and zEP(1b), its functional coupling to PGF(2 alpha) instead of PGE(2) suggested that zEP(1c) isoforms might have sub-functionalized in their ligand binding and G protein coupling specificity, in addition to differential tissue distribution. Characterization of these receptors undoubtedly furthered our understanding on the diverse yet highly target-specific responses of prostaglandins in teleosts. (C) 2012 Elsevier Inc. All rights reserved.

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