Multiple signal transduction pathways through two prostaglandin E receptor EP3 subtype isoforms expressed in human uterus. 2000

M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
Department of Medicine and Clinical Science, Kyoto University Graduate School of Medicine, Japan.

PGE2 is known to induce uterine contraction by increasing intracellular Ca2+. In the present study, to investigate other functions of PGE2 in human uterus, two EP3 isoforms were isolated by the RT-PCR method using human uterus polyadenylated ribonucleic acid (RNA). These EP3 isoforms, named EP3-V and EP3-VI, are composed of 402 and 393 amino acid residues, respectively, which are unique compared with EP3 isoforms of other species. Their N-terminal 359 amino acid residues are identical to those of previously reported human EP3 isoforms, whereas the two isoforms contained a novel amino acid sequence in their C-terminal tails. The dissociation constant values of EP3-V and EP3-VI for PGE2 were 3.9 and 1.4 nmol/L, respectively, which were consistent with those of previously reported EP3 isoforms. Signaling experiments revealed that M&B28767, an EP3 agonist, not only inhibited forskolin-induced cAMP concentrations, but also activated mitogen-activated protein kinase in Chinese hamster ovary cells stably expressing EP3-V and EP3-VI. These responses were abolished by treatment with pertussis toxin. In addition, M&B28767 increased cAMP concentrations in EP3-VI-expressing cells, whereas it did not in EP3-V-expressing cells. M&B28767 did not stimulate phosphoinositide turnover in EP3-V or EP3-VI-expressing cells. EP3-V and EP3-VI messenger RNAs (mRNAs) were detected abundantly in human uterus, whereas weak, but substantial, bands were detected in the lung and kidney in RT-PCR specific for each mRNA. In situ hybridization revealed EP3-V and EP3-VI mRNAs in the human myometrium, but not in the endometrium. The present study suggests that EP3-V and EP3-VI are possibly involved in the proliferation of cells in human myometrium.

UI MeSH Term Description Entries
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D011994 Recombinant Proteins Proteins prepared by recombinant DNA technology. Biosynthetic Protein,Biosynthetic Proteins,DNA Recombinant Proteins,Recombinant Protein,Proteins, Biosynthetic,Proteins, Recombinant DNA,DNA Proteins, Recombinant,Protein, Biosynthetic,Protein, Recombinant,Proteins, DNA Recombinant,Proteins, Recombinant,Recombinant DNA Proteins,Recombinant Proteins, DNA
D002462 Cell Membrane The lipid- and protein-containing, selectively permeable membrane that surrounds the cytoplasm in prokaryotic and eukaryotic cells. Plasma Membrane,Cytoplasmic Membrane,Cell Membranes,Cytoplasmic Membranes,Membrane, Cell,Membrane, Cytoplasmic,Membrane, Plasma,Membranes, Cell,Membranes, Cytoplasmic,Membranes, Plasma,Plasma Membranes
D005260 Female Females
D005576 Colforsin Potent activator of the adenylate cyclase system and the biosynthesis of cyclic AMP. From the plant COLEUS FORSKOHLII. Has antihypertensive, positive inotropic, platelet aggregation inhibitory, and smooth muscle relaxant activities; also lowers intraocular pressure and promotes release of hormones from the pituitary gland. Coleonol,Forskolin,N,N-Dimethyl-beta-alanine-5-(acetyloxy)-3-ethenyldodecahydro-10,10b-dihydroxy-3,4a,7,7,10a-pentamethyl-1-oxo-1H-naphtho(2,1-b)pyran-6-yl Ester HCl,NKH 477,NKH-477,NKH477
D006224 Cricetinae A subfamily in the family MURIDAE, comprising the hamsters. Four of the more common genera are Cricetus, CRICETULUS; MESOCRICETUS; and PHODOPUS. Cricetus,Hamsters,Hamster
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000242 Cyclic AMP An adenine nucleotide containing one phosphate group which is esterified to both the 3'- and 5'-positions of the sugar moiety. It is a second messenger and a key intracellular regulator, functioning as a mediator of activity for a number of hormones, including epinephrine, glucagon, and ACTH. Adenosine Cyclic 3',5'-Monophosphate,Adenosine Cyclic 3,5 Monophosphate,Adenosine Cyclic Monophosphate,Adenosine Cyclic-3',5'-Monophosphate,Cyclic AMP, (R)-Isomer,Cyclic AMP, Disodium Salt,Cyclic AMP, Monoammonium Salt,Cyclic AMP, Monopotassium Salt,Cyclic AMP, Monosodium Salt,Cyclic AMP, Sodium Salt,3',5'-Monophosphate, Adenosine Cyclic,AMP, Cyclic,Adenosine Cyclic 3',5' Monophosphate,Cyclic 3',5'-Monophosphate, Adenosine,Cyclic Monophosphate, Adenosine,Cyclic-3',5'-Monophosphate, Adenosine,Monophosphate, Adenosine Cyclic
D000527 Alprostadil A potent vasodilator agent that increases peripheral blood flow. PGE1,Prostaglandin E1,Caverject,Edex,Lipo-PGE1,Minprog,Muse,PGE1alpha,Prostaglandin E1alpha,Prostavasin,Prostin VR,Prostine VR,Sugiran,Vasaprostan,Viridal,Lipo PGE1
D000595 Amino Acid Sequence The order of amino acids as they occur in a polypeptide chain. This is referred to as the primary structure of proteins. It is of fundamental importance in determining PROTEIN CONFORMATION. Protein Structure, Primary,Amino Acid Sequences,Sequence, Amino Acid,Sequences, Amino Acid,Primary Protein Structure,Primary Protein Structures,Protein Structures, Primary,Structure, Primary Protein,Structures, Primary Protein

Related Publications

M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
January 1995, Advances in prostaglandin, thromboxane, and leukotriene research,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
January 1996, The Journal of biological chemistry,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
May 1997, British journal of pharmacology,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
September 1994, Biochemical and biophysical research communications,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
May 2011, The British journal of ophthalmology,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
May 1993, The Journal of biological chemistry,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
May 1994, Biochemical and biophysical research communications,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
August 2004, Gut,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
November 2010, Cornea,
M Kotani, and I Tanaka, and Y Ogawa, and T Suganami, and T Matsumoto, and S Muro, and Y Yamamoto, and A Sugawara, and Y Yoshimasa, and N Sagawa, and S Narumiya, and K Nakao
May 2005, Nature immunology,
Copied contents to your clipboard!