Nox2 and p47phox modulate compensatory growth of primary collateral arteries

被引:8
|
作者
DiStasi, Matthew R. [1 ]
Unthank, Joseph L. [2 ,3 ]
Miller, Steven J. [2 ,3 ]
机构
[1] Indiana Univ Sch Med, Dept Microbiol & Immunol, Indianapolis, IN 46202 USA
[2] Indiana Univ Sch Med, Dept Surg, Indianapolis, IN 46202 USA
[3] Indiana Univ Sch Med, Dept Cellular & Integrat Physiol, Indianapolis, IN 46202 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY | 2014年 / 306卷 / 10期
基金
美国国家卫生研究院;
关键词
collateral artery; hydrogen peroxide; NADPH oxidase; Nox2; p47(phox); NITRIC-OXIDE SYNTHASE; VASCULAR NADPH OXIDASES; NAD(P)H OXIDASE; ENDOTHELIAL-CELLS; HYDROGEN-PEROXIDE; ANGIOTENSIN-II; SHEAR-STRESS; POSTTRANSCRIPTIONAL REGULATION; MICROVASCULAR RESISTANCES; MESENTERIC-ARTERIES;
D O I
10.1152/ajpheart.00828.2013
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The role of NADPH oxidase (Nox) in both the promotion and impairment of compensatory collateral growth remains controversial because the specific Nox and reactive oxygen species involved are unclear. The aim of this study was to identify the primary Nox and reactive oxygen species associated with early stage compensatory collateral growth in young, healthy animals. Ligation of the feed arteries that form primary collateral pathways in rat mesentery and mouse hindlimb was used to assess the role of Nox during collateral growth. Changes in mesenteric collateral artery Nox mRNA expression determined by real-time PCR at 1, 3, and 7 days relative to same-animal control arteries suggested a role for Nox subunits Nox2 and p47(phox). Administration of apocynin or Nox2ds-tat suppressed collateral growth in both rat and mouse models, suggesting the Nox2/p47(phox) interaction was involved. Functional significance of p47(phox) expression was assessed by evaluation of collateral growth in rats administered p47(phox) small interfering RNA and in p47(phox-/-) mice. Diameter measurements of collateral mesenteric and gracilis arteries at 7 and 14 days, respectively, indicated no significant collateral growth compared with control rats or C57BL/6 mice. Chronic polyethylene glycol-conjugated catalase administration significantly suppressed collateral development in rats and mice, implying a requirement for H2O2. Taken together, these results suggest that Nox2, modulated at least in part by p47(phox), mediates early stage compensatory collateral development via a process dependent upon peroxide generation. These results have important implications for the use of antioxidants and the development of therapies for peripheral arterial disease.
引用
收藏
页码:H1435 / H1443
页数:9
相关论文
共 50 条
  • [41] The molecular basis of Rac-GTP action-promoting binding of p67phox to Nox2 by disengaging the β hairpin from downstream residues
    Bechor, Edna
    Zahavi, Anat
    Berdichevsky, Yevgeny
    Pick, Edgar
    JOURNAL OF LEUKOCYTE BIOLOGY, 2021, 110 (02) : 219 - 237
  • [42] p47phox-Nox2-dependent ROS Signaling Inhibits Early Bone Development in Mice but Protects against Skeletal Aging
    Chen, Jin-Ran
    Lazarenko, Oxana P.
    Blackburn, Michael L.
    Mercer, Kelly E.
    Badger, Thomas M.
    Ronis, Martin J. J.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (23) : 14692 - 14704
  • [43] PP2A-dependent control of transcriptionally active FOXO3a in CD8+ central memory lymphocyte survival requires p47phox
    Liu, Q.
    Yi, L.
    Sadiq-Ali, S.
    Koontz, S. M.
    Wood, A.
    Zhu, N.
    Jackson, S. H.
    CELL DEATH & DISEASE, 2012, 3 : e375 - e375
  • [44] Eugenol prevents fMLF-induced superoxide anion production in human neutrophils by inhibiting ERK1/2 signaling pathway and p47phox phosphorylation
    Chniguir, Amina
    Pintard, Coralie
    Liu, Dan
    Pham My-Chan Dang
    El-Benna, Jamel
    Bachoual, Rafik
    SCIENTIFIC REPORTS, 2019, 9 (1)
  • [45] Short-term intravenous insulin infusion is associated with reduced expression of NADPH oxidase p47phox subunit in monocytes from type 2 diabetes patients
    Vaquer, Guillaume
    Magous, Richard
    Cros, Gerard
    Wojtusciszyn, Anne
    Renard, Eric
    Chevassus, Hughes
    Petit, Pierre
    Lajoix, Anne-Dominique
    Oiry, Catherine
    FUNDAMENTAL & CLINICAL PHARMACOLOGY, 2013, 27 (06) : 669 - 671
  • [46] Inhibition of formyl-methionyl-leucyl-phenylalanine-stimulated respiratory burst in human neutrophils by adrenaline:: inhibition of Phospholipase A2 activity but not p47phox phosphorylation and translocation
    O'Dowd, YM
    El-Benna, J
    Perianin, A
    Newsholme, P
    BIOCHEMICAL PHARMACOLOGY, 2004, 67 (01) : 183 - 190
  • [47] Dietary Sutherlandia and Elderberry Mitigate Cerebral Ischemia-Induced Neuronal Damage and Attenuate p47phox and Phospho-ERK1/2 Expression in Microglial Cells
    Chuang, Dennis Y.
    Cui, Jiankun
    Simonyi, Agnes
    Engel, Victoria A.
    Chen, Shanyan
    Fritsche, Kevin L.
    Thomas, Andrew L.
    Applequist, Wendy L.
    Folk, William R.
    Lubahn, Dennis B.
    Sun, Albert Y.
    Sun, Grace Y.
    Gu, Zezong
    ASN NEURO, 2014, 6 (06):
  • [48] Increased reactive oxygen species production and p47phox phosphorylation in neutrophils from myeloproliferative disorders patients with JAK2 (V617F) mutation
    Hurtado-Nedelec, Margarita
    Csillag-Grange, Marie-Jose
    Boussetta, Tarek
    Belambri, Sahra Amel
    Fay, Michele
    Cassinat, Bruno
    Gougerot-Pocidalo, Marie-Anne
    Dang, Pham My-Chan
    El-Benna, Jamel
    HAEMATOLOGICA, 2013, 98 (10) : 1517 - 1524
  • [49] Protein kinase C-mediated phosphorylation of p47phox modulates platelet-derived growth factor-induced H2O2 generation and cell proliferation in human umbilical vein endothelial cells
    Simon, F.
    Stutzin, A.
    ENDOTHELIUM-JOURNAL OF ENDOTHELIAL CELL RESEARCH, 2008, 15 (04): : 175 - 188
  • [50] Hyperoxia-induced p47phox activation and ROS generation is mediated through S1P transporter Spns2, and S1P/S1P1&2 signaling axis in lung endothelium
    Harijith, Anantha
    Pendyala, Srikanth
    Ebenezer, David L.
    Ha, Alison W.
    Fu, Panfeng
    Wang, Yue-Ting
    Ma, Ke
    Toth, Peter T.
    Berdyshev, Evgeny V.
    Kanteti, Prasad
    Natarajan, Viswanathan
    AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2016, 311 (02) : L337 - L351