TY - JOUR
T1 - Expresión y actividad de posibles polimorfismos provenientes de individuos normales en la proteína de 67 kd del sistema NADPH oxidasa utilizando el sistema COSphox.
AU - Arias, Andrés Augusto
AU - Dinauer, Mary C.
AU - Ding, Jiabin
AU - Matute, Juan David
AU - Patiño, Pablo Javier
PY - 2004/9
Y1 - 2004/9
N2 - The NADPH oxidase system plays a central role in the antimicrobial activity of phagocytes. This system is initiated by the translocation of cytosolic proteins p67phox, p47phox and p40phox to be in close contact with membrane flavocytochrome b558. This event begins the electron transfer from cytosolic NADPH to molecular oxygen to produce superoxide anions. Herein, a functional analysis is presented of p67phox polymorphisms identified from healthy humans. Mutations were generated in the p67phox cDNA by site-directed mutagenesis and then transiently expressed in COS7 cells that also expressed gp91phox, p22phox, and p47phox from stable transgenes. The changes Va1166lle, Pro329Ser and His389Gln correspond to possible polymorphisms identified in healthy individuals revealed a functional activity similar to COSphox cells transiently transfected with WT p67phox; therefore, these modifications are not associated with genetic deficiencies in NADPH oxidase. In conclusion, the COSphox system represents an easily transfectable model for analysis of NADPH oxidase function in intact cells. The analysis of mutant derivatives of p67phox provides insight into molecular mechanisms by which this subunit regulates the NADPH oxidase.
AB - The NADPH oxidase system plays a central role in the antimicrobial activity of phagocytes. This system is initiated by the translocation of cytosolic proteins p67phox, p47phox and p40phox to be in close contact with membrane flavocytochrome b558. This event begins the electron transfer from cytosolic NADPH to molecular oxygen to produce superoxide anions. Herein, a functional analysis is presented of p67phox polymorphisms identified from healthy humans. Mutations were generated in the p67phox cDNA by site-directed mutagenesis and then transiently expressed in COS7 cells that also expressed gp91phox, p22phox, and p47phox from stable transgenes. The changes Va1166lle, Pro329Ser and His389Gln correspond to possible polymorphisms identified in healthy individuals revealed a functional activity similar to COSphox cells transiently transfected with WT p67phox; therefore, these modifications are not associated with genetic deficiencies in NADPH oxidase. In conclusion, the COSphox system represents an easily transfectable model for analysis of NADPH oxidase function in intact cells. The analysis of mutant derivatives of p67phox provides insight into molecular mechanisms by which this subunit regulates the NADPH oxidase.
UR - http://www.scopus.com/inward/record.url?scp=16544371233&partnerID=8YFLogxK
U2 - 10.7705/biomedica.v24i3.1272
DO - 10.7705/biomedica.v24i3.1272
M3 - Article
C2 - 15551878
AN - SCOPUS:16544371233
SN - 0120-4157
VL - 24
SP - 262
EP - 272
JO - Biomédica : revista del Instituto Nacional de Salud
JF - Biomédica : revista del Instituto Nacional de Salud
IS - 3
ER -