scholarly journals Direct Involvement of the Small GTPase Rac in Activation of the Superoxide-producing NADPH Oxidase Nox1

2006 ◽  
Vol 281 (31) ◽  
pp. 21857-21868 ◽  
Author(s):  
Kei Miyano ◽  
Noriko Ueno ◽  
Ryu Takeya ◽  
Hideki Sumimoto
FEBS Letters ◽  
2008 ◽  
Vol 582 (15) ◽  
pp. 2195-2202 ◽  
Author(s):  
Balakrishnan Selvakumar ◽  
Douglas T. Hess ◽  
Pascal J. Goldschmidt-Clermont ◽  
Jonathan S. Stamler

1999 ◽  
Vol 274 (35) ◽  
pp. 25051-25060 ◽  
Author(s):  
Hirofumi Koga ◽  
Hiroaki Terasawa ◽  
Hiroyuki Nunoi ◽  
Koichiro Takeshige ◽  
Fuyuhiko Inagaki ◽  
...  

Author(s):  
Hann Ling Wong ◽  
Reinhard Pinontoan ◽  
Kana Hasegawa ◽  
Takashi Yaeno ◽  
Koh Iba ◽  
...  

Author(s):  
Jennifer L. Johnson ◽  
Mahalakshmi Ramadass ◽  
Farhana Rahman ◽  
Elsa Meneses‐Salas ◽  
Nadia R. Zgajnar ◽  
...  

2014 ◽  
Vol 289 (41) ◽  
pp. 28569-28578 ◽  
Author(s):  
Ken-ichi Kosami ◽  
Izuru Ohki ◽  
Minoru Nagano ◽  
Kyoko Furuita ◽  
Toshihiko Sugiki ◽  
...  

2005 ◽  
Vol 18 (2) ◽  
pp. 116-124 ◽  
Author(s):  
Wolfgang Moeder ◽  
Keiko Yoshioka ◽  
Daniel F. Klessig

During the hypersensitive response (HR), plants accumulate reactive oxygen species (ROS) that are likely generated at least in part by an NADPH oxidase similar to that found in mammalian neutrophils. An essential regulator of mammalian NADPH oxidase is the small GTP-binding protein Rac. To investigate whether Rac also regulates the pathogen-induced oxidative burst in plants, a dominant negative form of the rice OsRac1 gene was overexpressed in tobacco carrying the N resistance gene. Following infection with Tobacco mosaic virus (TMV), DN-OsRac1 plants developed smaller lesions than wild-type plants, accumulated lower levels of lipid peroxidation products, and failed to activate expression of antioxidant genes. These results, combined with the demonstration that superoxide and hydrogen peroxide levels were reduced in DN-OsRac1 tobacco developing a synchronous HR triggered by transient expression of the TMV p50 helicase domain or the Pto and AvrPto proteins, suggest that ROS production is impaired. The dominant negative effect of DN-OsRac1 could be rescued by transiently overexpressing the wild-type OsRac1 protein. TMV-induced salicylic acid accumulation also was compromised in DN-OsRac1 tobacco. Interestingly, while systemic acquired resistance to TMV was not impaired, nonhost resistance to Pseudomonas syringae pv. maculicola ES4326 was suppressed. Thus, the effect DN-OsRac1 expression exerts on the resistance signaling pathway appears to vary depending on the identity of the inoculated pathogen.


2009 ◽  
Vol 419 (2) ◽  
pp. 329-338 ◽  
Author(s):  
Masahiko Taura ◽  
Kei Miyano ◽  
Reiko Minakami ◽  
Sachiko Kamakura ◽  
Ryu Takeya ◽  
...  

The superoxide-producing NADPH oxidase in phagocytes is crucial for host defence; its catalytic core is the membrane-integrated protein gp91phox [also known as Nox2 (NADPH oxidase 2)], which forms a stable heterodimer with p22phox. Activation of the oxidase requires membrane translocation of the three cytosolic proteins p47phox, p67phox and the small GTPase Rac. At the membrane, these proteins assemble with the gp91phox–p22phox heterodimer and induce a conformational change of gp91phox, leading to superoxide production. p47phox translocates to membranes using its two tandemly arranged SH3 domains, which directly interact with p22phox, whereas p67phox is recruited in a p47phox-dependent manner. In the present study, we show that a short region N-terminal to the bis-SH3 domain is required for activation of the phagocyte NADPH oxidase. Alanine substitution for Ile152 in this region, a residue that is completely conserved during evolution, results in a loss of the ability to activate the oxidase; and the replacement of Thr153 also prevents oxidase activation, but to a lesser extent. In addition, the corresponding isoleucine residue (Ile155) of the p47phox homologue Noxo1 (Nox organizer 1) participates in the activation of non-phagocytic oxidases, such as Nox1 and Nox3. The I152A substitution in p47phox, however, does not affect its interaction with p22phox or with p67phox. Consistent with this, a mutant p47phox (I152A), as well as the wild-type protein, is targeted upon cell stimulation to membranes, and membrane recruitment of p67phox and Rac normally occurs in p47phox (I152A)-expressing cells. Thus the Ile152-containing region of p47phox plays a crucial role in oxidase activation, probably by functioning at a process after oxidase assembly.


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