Consensus in silico computational modelling of the p22phox subunit of the NADPH oxidase

被引:17
作者
Meijles, Daniel N. [2 ]
Howlin, Brendan J. [1 ]
Li, Jian-Mei [2 ]
机构
[1] Univ Surrey, Fac Hlth & Med Sci, Dept Chem, Div Chem Sci, Guildford GU2 7XH, Surrey, England
[2] Univ Surrey, Fac Hlth & Med Sci, Div Biosci, Guildford GU2 7XH, Surrey, England
基金
英国生物技术与生命科学研究理事会;
关键词
Homology Modelling; p22phox; NADPH Oxidase; FLAVOCYTOCHROME B(558); NOX-FAMILY; MUTAGENESIS; ACTIVATION; GP91(PHOX); GENERATION; PREDICTION; DOMAINS;
D O I
10.1016/j.compbiolchem.2012.05.001
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The p22(phox) protein is an essential subunit of the cytochrome b(558) of the NADPH oxidase (Nox) complex which by generating reactive oxygen species (ROS) plays important role in regulating cellular function. p22(phox) stabilises the Nox enzyme, assists in catalytic core maturation and in the meantime provides an anchoring site for cytosolic regulatory subunits to bind. However, the protein structure of the p22(phox) is still uncertain. In this study we use an in silico computational bioinformatic approach to produce a consensus 3-dimensional model of the p22(phox). Based on published protein sequence data of human p22(phox) and by using transmembrane specific protein prediction algorithms, we found that p22(phox) consists of two domains: an N-terminal transmembrane domain (124 a.a.) and a C-terminal cytoplasmic domain (71 a.a.). In its predicted most stable form, p22(phox) contains three transmembrane helices leading to an extracellular N-terminus and an extensive (39 a.a.) extracellular loop between helices 2 and 3. Furthermore, we locate the cytosolic domain phosphorylation site at threoninew which literature shows is capable of priming the p22(phox), in order to accept its binding partners. Our results are consistent with the biological characterisation of p22(phox) derived from experiments using specific antibody or genetic manipulation. Our 3-D protein model provides insights into the biological function of p22(phox) and cytochrome b(558), and can be used as tool to investigate the regulatory mechanism of Nox isoforms. (c) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:6 / 13
页数:8
相关论文
共 28 条
[1]   The NOX family of ROS-generating NADPH oxidases: Physiology and pathophysiology [J].
Bedard, Karen ;
Krause, Karl-Heinz .
PHYSIOLOGICAL REVIEWS, 2007, 87 (01) :245-313
[2]   Mutagenesis of p22phox histidine 94 -: A histidine in this position is not required for flavocytochrome b558 function [J].
Biberstine-Kinkade, KJ ;
Yu, LX ;
Stull, N ;
LeRoy, B ;
Bennett, S ;
Cross, A ;
Dinauer, MC .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (33) :30368-30374
[3]   New p22-Phox Monoclonal Antibodies: Identification of a Conformational Probe for Cytochrome b558 [J].
Campion, Yannick ;
Jesaitis, Algirdas J. ;
Nguyen, Minh Vu Chuong ;
Grichine, Alexei ;
Herenger, Yvan ;
Baillet, Athan ;
Berthier, Sylvie ;
Morel, Francoise ;
Paclet, Marie-Helene .
JOURNAL OF INNATE IMMUNITY, 2009, 1 (06) :556-569
[4]   Structure and Dynamics of the Membrane-Bound Cytochrome P450 2C9 [J].
Cojocaru, Vlad ;
Balali-Mood, Kia ;
Sansom, Mark S. P. ;
Wade, Rebecca C. .
PLOS COMPUTATIONAL BIOLOGY, 2011, 7 (08)
[5]   In silico protein recombination:: Enhancing template and sequence alignment selection for comparative protein modelling [J].
Contreras-Moreira, B ;
Fitzjohn, PW ;
Bates, PA .
JOURNAL OF MOLECULAR BIOLOGY, 2003, 328 (03) :593-608
[6]   Mapping of functional domains in the p22phox subunit of flavocytochrome b559 participating in the assembly of the NADPH oxidase complex by "peptide walking" [J].
Dahan, I ;
Issaeva, I ;
Gorzalczany, Y ;
Sigal, N ;
Hirshberg, M ;
Pick, E .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (10) :8421-8432
[7]   Activation and assembly of the NADPH oxidase: a structural perspective [J].
Groemping, Y ;
Rittinger, K .
BIOCHEMICAL JOURNAL, 2005, 386 :401-416
[8]   Molecular basis of phosphorylation-induced activation of the NADPH oxidase [J].
Groemping, Y ;
Lapouge, K ;
Smerdon, SJ ;
Rittinger, K .
CELL, 2003, 113 (03) :343-355
[9]   A combined transmembrane topology and signal peptide prediction method [J].
Käll, L ;
Krogh, A ;
Sonnhammer, ELL .
JOURNAL OF MOLECULAR BIOLOGY, 2004, 338 (05) :1027-1036
[10]   Residual NADPH Oxidase and Survival in Chronic Granulomatous Disease. [J].
Kuhns, Douglas B. ;
Alvord, W. Gregory ;
Heller, Theo ;
Feld, Jordan J. ;
Pike, Kristen M. ;
Marciano, Beatriz E. ;
Uzel, Gulbu ;
DeRavin, Suk See ;
Priel, Debra A. Long ;
Soule, Benjamin P. ;
Zarember, Kol A. ;
Malech, Harry L. ;
Holland, Steven M. ;
Gallin, John I. .
NEW ENGLAND JOURNAL OF MEDICINE, 2010, 363 (27) :2600-2610