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Journal of Neurochemistry|February 6, 2004
Protein associated with Myc (PAM) is involved in spinal nociceptive processingCorina Ehnert, Irmgard Tegeder, Sandra Pierre, et al.Redox Report : Communications in Free Radical Research|August 25, 2025
Redox-dependent activation of protein kinase G1α contributes to transient receptor potential cation channel subfamily V member 1-mediated acute nociceptive pain behaviorTim Berg, Katharina Metzner, Nabil Bahrami, et al.Antioxidants & Redox Signaling|January 24, 2014
Oxidant-induced activation of cGMP-dependent protein kinase Iα mediates neuropathic pain after peripheral nerve injuryJana E Lorenz, Wiebke Kallenborn-Gerhardt, Ruirui Lu, et al.The Journal of Biological Chemistry|March 8, 2005
Dimerization of nitric oxide-sensitive guanylyl cyclase requires the alpha 1 N terminusCorina Wagner, Michael Russwurm, Ronald Jäger, et al.The Journal of Clinical Investigation|April 15, 2006
Spare guanylyl cyclase NO receptors ensure high NO sensitivity in the vascular systemEvanthia Mergia, Andreas Friebe, Oliver Dangel, et al.Proceedings of the National Academy of Sciences of the United States of America|April 25, 2007
Fatal gastrointestinal obstruction and hypertension in mice lacking nitric oxide-sensitive guanylyl cyclaseAndreas Friebe, Evanthia Mergia, Oliver Dangel, et al.Molecular Pharmacology|March 3, 2006
Desensitization of NO/cGMP signaling in smooth muscle: blood vessels versus airwaysFlorian Mullershausen, Alexander Lange, Evanthia Mergia, et al.Neurochemistry International|August 18, 2004
Nitric oxide-sensitive guanylyl cyclase: structure and regulationDoris Koesling, Michael Russwurm, Evanthia Mergia, et al.Diabetes|October 28, 2010
Cyclic GMP kinase I modulates glucagon release from pancreatic α-cellsVeronika Leiss, Andreas Friebe, Andrea Welling, et al.Angiogenesis|March 22, 2015
Cell-specific impact of nitric oxide-dependent guanylyl cyclase on arteriogenesis and angiogenesis in miceNoomen Bettaga, Ronald Jäger, Sarah Dünnes, et al.Pageof 25