Rho-kinase mediates spinal nitric oxide formation by prostaglandin E2 via EP3 subtype
Shinji Matsumura(Kansai Medical University), Seiji Ito(Gunma Industrial Technology Center), Emiko Okuda‐Ashitaka(Nara Medical University Hospital), Kunio Takagi, Tetsuya Abe(Kansai Medical University), Masaaki Suzuki(Nagoya University), Tayo Katano, Yasuharu Sasaki(Kitasato University), Yoshihide Nakai(Kansai Medical University), Shinichi Tatsumi(Osaka Medical and Pharmaceutical University), Toshiaki Minami(Osaka University of Pharmaceutical Sciences), Hiroyoshi Hidaka(Mie University), Tamaki Mabuchi
Cited by 21
Related Papers
N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide, a calmodulin antagonist, inhibits cell proliferation.
|Proceedings of the National Academy of Sciences|1981|586
Alternative splicing of C-terminal tail of prostaglandin E receptor subtype EP3 determines G-protein specificity
|Nature|1993|550
Identification and Characterization of a Novel Type of Membrane-Associated Prostaglandin E Synthase
|Biochemical and Biophysical Research Communications|2002|306
Direct linkage of three tachykinin receptors to stimulation of both phosphatidylinositol hydrolysis and cyclic AMP cascades in transfected Chinese hamster ovary cells.
|Journal of Biological Chemistry|1992|262
Lack of tactile pain (allodynia) in lipocalin-type prostaglandin D synthase-deficient mice
|Proceedings of the National Academy of Sciences|1999|241