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Biochimica Et Biophysica Acta|August 9, 2011
Connexin43 phosphorylation in brain, cardiac, endothelial and epithelial tissuesLucrecia Márquez-Rosado, Joell L Solan, Clarence A Dunn, et al.Developmental Biology|September 14, 2007
A G(s)-linked receptor maintains meiotic arrest in mouse oocytes, but luteinizing hormone does not cause meiotic resumption by terminating receptor-G(s) signalingRachael P Norris, Leon Freudzon, Marina Freudzon, et al.Development (Cambridge, England)|September 9, 2008
Luteinizing hormone causes MAP kinase-dependent phosphorylation and closure of connexin 43 gap junctions in mouse ovarian follicles: one of two paths to meiotic resumptionRachael P Norris, Marina Freudzon, Lisa M Mehlmann, et al.Proceedings of the National Academy of Sciences of the United States of America|March 17, 2015
Intercellular signaling via cyclic GMP diffusion through gap junctions restarts meiosis in mouse ovarian folliclesLeia C Shuhaibar, Jeremy R Egbert, Rachael P Norris, et al.Developmental Biology|May 2, 2012
Luteinizing hormone reduces the activity of the NPR2 guanylyl cyclase in mouse ovarian follicles, contributing to the cyclic GMP decrease that promotes resumption of meiosis in oocytesJerid W Robinson, Meijia Zhang, Leia C Shuhaibar, et al.Development (Cambridge, England)|May 12, 2009
Cyclic GMP from the surrounding somatic cells regulates cyclic AMP and meiosis in the mouse oocyteRachael P Norris, William J Ratzan, Marina Freudzon, et al.The Journal of Cell Biology|October 26, 2005
Regulation of meiotic prophase arrest in mouse oocytes by GPR3, a constitutive activator of the Gs G proteinLeon Freudzon, Rachael P Norris, Arthur R Hand, et al.Plos Biology|January 17, 2018
Anteroposterior axis patterning by early canonical Wnt signaling during hemichordate developmentSébastien Darras, Jens H Fritzenwanker, Kevin R Uhlinger, et al.Pageof 2