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Chemical Research in Toxicology|December 20, 2005
Metabolism of aminoguanidine, diaminoguanidine, and NG-amino-L-arginine by neuronal NO-synthase and covalent alteration of the heme prosthetic groupAnthony J Lee, Kathleen R Noon, Suree Jianmongkol, et al.
The Journal of Biological Chemistry|April 17, 2014
Architecture of the nitric-oxide synthase holoenzyme reveals large conformational changes and a calmodulin-driven release of the FMN domainAdam L Yokom, Yoshihiro Morishima, Miranda Lau, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|June 2, 2006
Tetrahydrobiopterin protects against guanabenz-mediated inhibition of neuronal nitric-oxide synthase in vitro and in vivoAnwar Y Dunbar, Gary J Jenkins, Suree Jianmongkol, et al.
The Journal of Biological Chemistry|August 24, 2010
C331A mutant of neuronal nitric-oxide synthase is labilized for Hsp70/CHIP (C terminus of HSC70-interacting protein)-dependent ubiquitinationKelly M Clapp, Hwei-Ming Peng, Yoshihiro Morishima, et al.
The Journal of Biological Chemistry|November 18, 2023
Mapping interactions of calmodulin and neuronal NO synthase by crosslinking and mass spectrometryDana Felker, Kanghyun Lee, Thomas H Pospiech, et al.
The Journal of Biological Chemistry|October 31, 2012
Ubiquitination of neuronal nitric-oxide synthase in the calmodulin-binding site triggers proteasomal degradation of the proteinKelly M Clapp, Hwei-Ming Peng, Gary J Jenkins, et al.
The Journal of Biological Chemistry|October 7, 2004
Ubiquitylation of neuronal nitric-oxide synthase by CHIP, a chaperone-dependent E3 ligaseHwei-Ming Peng, Yoshihiro Morishima, Gary J Jenkins, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|October 8, 2004
Time-dependent inhibition and tetrahydrobiopterin depletion of endothelial nitric-oxide synthase caused by cigarettesEzra R Lowe, Andrew C Everett, Anthony J Lee, et al.
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