Important role of tetrahydrobiopterin in NO complex formation and interdomain electron transfer in neuronal nitric-oxide synthase

被引:12
作者
Noguchi, T
Sagami, I
Daff, S
Shimizu, T
机构
[1] Tohoku Univ, Inst Chem React Sci, Aoba Ku, Sendai, Miyagi 9808577, Japan
[2] Univ Edinburgh, Dept Chem, Edinburgh EH9 3JJ, Midlothian, Scotland
关键词
nitric-oxide synthase; tetrahydrobiopterine; electron transfer; site-directed mutagenesis; NADPH oxidation; heme reduction;
D O I
10.1006/bbrc.2001.4697
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Neuronal nitric-oside synthase (nNOS) is composed of a heme oxygenase domain and a flavin-bound reductase domain. Ca2+/calmodulin (CaM) is essential for interdomain electron transfer during catalysis, whereas the role of the catalytically important cofactor, tetrahydrobiopterin (H4B) remains elusive, The product NO appears to bind to the heme and works as a feedback: inhibitor, The present study shows that the Fe3+-NO complex is reduced to the Fe2+-NO complex by NADPH in the presence of both L-Arg and H4B even in the absence of Ca2+/CaM. The complex could not be fully reduced in the absence of H4B under any circumstances. However, dihydrobioptepin and N-G-hydroxy-L-ARG, respectively could be substituted for H4B and L-Arg, respectively, No direct correlation could be found between redox potentials of the nNOS heme and the observed reduction of the Fe3+-NO complex, Thus, sur data indicate the importance of the pterin binding to the active site structure during the reduction of the NO-heme complex by NADPH during catalytic turnover. (C) 2001 Academic Press.
引用
收藏
页码:1092 / 1097
页数:6
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