1 |
Effects of NAD(P)H and its derivatives on the DNA-binding activity of NPAS2, a mammalian circadian transcription factor Yoshii K, Ishijima S, Sagami I Biochemical and Biophysical Research Communications, 437(3), 386, 2013 |
2 |
Effects of mutations in the heme domain on the transcriptional activity and DNA-binding activity of NPAS2 Ishida M, Ueha T, Sagami I Biochemical and Biophysical Research Communications, 368(2), 292, 2008 |
3 |
Arg410 near the heme proximal ligand of neuronal nitric oxide synthase is critical for both substrate recognition and electron transfer Yadav J, Fujiwara S, Sagami I, Shimizu T Chemistry Letters, 33(6), 752, 2004 |
4 |
Fluorescence spectra of Trp53Phe and Trp110Ile mutants of a heme-regulated phosphodiesterase from Escherichia coli Hirata S, Kurokawa H, Sagami I, Shimizu T Chemistry Letters, 33(7), 870, 2004 |
5 |
Critical role of Va1567 in substrate recognition by neuronal nitric oxide synthase for NO formation activity Takahashi H, Sato Y, Moreau M, Sari MA, Boucher JL, Mansuy D, Sagami I, Shimizu T Chemistry Letters, 32(11), 998, 2003 |
6 |
Unusual cyanide bindings to a heme-regulated phosphodiesterase from Escherichia coli: effect of Met95 mutations Watanabe M, Matsui T, Sasakura Y, Sagami I, Shimizu T Biochemical and Biophysical Research Communications, 299(2), 169, 2002 |
7 |
Unusual role of Tyr588 of neuronal nitric oxide synthase in controlling substrate specificity and electron transfer Sato Y, Sagami I, Matsui T, Shimizu T Biochemical and Biophysical Research Communications, 281(3), 621, 2001 |
8 |
Important role of tetrahydrobiopterin in NO complex formation and interdomain electron transfer in neuronal nitric-oxide synthase Noguchi T, Sagami I, Daff S, Shimizu T Biochemical and Biophysical Research Communications, 282(5), 1092, 2001 |
9 |
Azo reduction of methyl red by neuronal nitric oxide synthase: The important role of FMN in catalysis Miyajima M, Sagami I, Daff S, Migita CT, Shimizu T Biochemical and Biophysical Research Communications, 275(3), 752, 2000 |