Endothelial Nitric Oxide Synthase-Dependent Superoxide Generation from Adriamycin†

Biochemistry ◽  
1997 ◽  
Vol 36 (38) ◽  
pp. 11293-11297 ◽  
Author(s):  
Jeannette Vásquez-Vivar ◽  
Pavel Martasek ◽  
Neil Hogg ◽  
Bettie Sue Siler Masters ◽  
Kirkwood A. Pritchard, ◽  
...  
2008 ◽  
Vol 283 (40) ◽  
pp. 27038-27047 ◽  
Author(s):  
Chun-An Chen ◽  
Lawrence J. Druhan ◽  
Saradhadevi Varadharaj ◽  
Yeong-Renn Chen ◽  
Jay L. Zweier

PLoS ONE ◽  
2015 ◽  
Vol 10 (11) ◽  
pp. e0142854 ◽  
Author(s):  
Hu Peng ◽  
Yugang Zhuang ◽  
Mark C. Harbeck ◽  
Donghong He ◽  
Lishi Xie ◽  
...  

2009 ◽  
Vol 285 (7) ◽  
pp. 4319-4327 ◽  
Author(s):  
Dmitry Kondrikov ◽  
Fabio V. Fonseca ◽  
Shawn Elms ◽  
David Fulton ◽  
Steven M. Black ◽  
...  

1998 ◽  
Vol 273 (40) ◽  
pp. 25804-25808 ◽  
Author(s):  
Yong Xia ◽  
Ah-Lim Tsai ◽  
Vladimir Berka ◽  
Jay L. Zweier

1998 ◽  
Vol 95 (16) ◽  
pp. 9220-9225 ◽  
Author(s):  
Jeannette Vásquez-Vivar ◽  
B. Kalyanaraman ◽  
Pavel Martásek ◽  
Neil Hogg ◽  
Bettie Sue Siler Masters ◽  
...  

The mechanism of superoxide generation by endothelial nitric oxide synthase (eNOS) was investigated by the electron spin resonance spin-trapping technique using 5-diethoxyphosphoryl-5-methyl-1-pyrroline N-oxide. In the absence of calcium/calmodulin, eNOS produces low amounts of superoxide. Upon activating eNOS electron transfer reactions by calcium/calmodulin binding, superoxide formation is increased. Heme-iron ligands, cyanide, imidazole, and the phenyl(diazene)-derived radical inhibit superoxide generation. No inhibition is observed after addition of l-arginine, NG-hydroxy-l-arginine, l-thiocitrulline, and l-NG-monomethyl arginine to activated eNOS. These results demonstrate that superoxide is generated from the oxygenase domain by dissociation of the ferrous–dioxygen complex and that occupation of the l-arginine binding site does not inhibit this process. However, the concomitant addition of l-arginine and tetrahydrobiopterin (BH4) abolishes superoxide generation by eNOS. Under these conditions, l-citrulline production is close to maximal. Our data indicate that BH4 fully couples l-arginine oxidation to NADPH consumption and prevents dissociation of the ferrous–dioxygen complex. Under these conditions, eNOS does not generate superoxide. The presence of flavins, at concentrations commonly employed in NOS assay systems, enhances superoxide generation from the reductase domain. Our data indicate that modulation of BH4 concentration may regulate the ratio of superoxide to nitric oxide generated by eNOS.


Author(s):  
Chi-Ming Wei ◽  
Margarita Bracamonte ◽  
Shi-Wen Jiang ◽  
Richard C. Daly ◽  
Christopher G.A. McGregor ◽  
...  

Nitric oxide (NO) is a potent endothelium-derived relaxing factor which also may modulate cardiomyocyte inotropism and growth via increasing cGMP. While endothelial nitric oxide synthase (eNOS) isoforms have been detected in non-human mammalian tissues, expression and localization of eNOS in the normal and failing human myocardium are poorly defined. Therefore, the present study was designed to investigate eNOS in human cardiac tissues in the presence and absence of congestive heart failure (CHF).Normal and failing atrial tissue were obtained from six cardiac donors and six end-stage heart failure patients undergoing primary cardiac transplantation. ENOS protein expression and localization was investigated utilizing Western blot analysis and immunohistochemical staining with the polyclonal rabbit antibody to eNOS (Transduction Laboratories, Lexington, Kentucky).


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