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La ricerca find articoli where soggetti phrase all words 'P67(PHOX)' sort by level,fasc_key/DESCEND, pagina_ini_num/ASCEND ha restituito 63 riferimenti
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    1. Hoffman, GR; Cerione, RA
      Rac inserts its way into the immune response

      NATURE IMMUNOLOGY
    2. Diebold, BA; Bokoch, GM
      Molecular basis for Rac2 regulation of phagocyte NADPH oxidase

      NATURE IMMUNOLOGY
    3. Smith, KR; Klei, LR; Barchowsky, A
      Arsenite stimulates plasma membrane NADPH oxidase in vascular endothelial cells

      AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY
    4. Borgato, L; Bonizzato, A; Lunardi, C; Dusi, S; Andrioli, G; Scarperi, A; Corrocher, R
      A 1.1-kb duplication in the p67-phox gene causes chronic granulomatous disease

      HUMAN GENETICS
    5. Ito, T; Matsui, Y; Ago, T; Ota, K; Sumimoto, H
      Novel modular domain PB1 recognizes PC motif to mediate functional protein-protein interactions

      EMBO JOURNAL
    6. Terasawa, H; Noda, Y; Ito, T; Hatanaka, H; Ichikawa, S; Ogura, K; Sumimoto, H; Inagaki, F
      Structure and ligand recognition of the PB1 domain: a novel protein modulebinding to the PC motif

      EMBO JOURNAL
    7. Inoue, Y; Itou, T; Jimbo, T; Sakai, T; Ueda, K; Imajoh-Ohmi, S
      Molecular cloning and identification of bottle-nosed dolphin p40(phox), p47(phox) and p67(phox)

      VETERINARY IMMUNOLOGY AND IMMUNOPATHOLOGY
    8. Grizot, S; Fieschi, F; Dagher, MC; Pebay-Peyroula, E
      The active N-terminal region of p67(phox) - Structure at 1.8 angstrom resolution and biochemical characterizations of the A128V mutant implicated in chronic granulomatous disease

      JOURNAL OF BIOLOGICAL CHEMISTRY
    9. Wang, HD; Xu, SQ; Johns, DG; Du, Y; Quinn, MT; Cayatte, AJ; Cohen, RA
      Role of NADPH oxidase in the vascular hypertrophic and oxidative stress response to angiotensin II in mice

      CIRCULATION RESEARCH
    10. Noack, D; Rae, J; Cross, AR; Ellis, BA; Newburger, PE; Curnutte, JT; Heyworth, PG
      Autosomal recessive chronic granulomatous disease caused by defects in NCF-1, the gene encoding the phagocyte p47-phox: mutations not arising in the NCF-1 pseudogenes

      BLOOD
    11. Grizot, S; Faure, J; Fieschi, F; Vignais, PV; Dagher, MC; Pebay-Peyroula, E
      Crystal structure of the Rac1-RhoGDI complex involved in NADPH oxidase activation

      BIOCHEMISTRY
    12. Di-Poi, N; Faure, J; Grizot, S; Molnar, G; Pick, E; Dagher, MC
      Mechanism of NADPH oxidase activation by the Rac/Rho-GDI complex

      BIOCHEMISTRY
    13. Grizot, S; Grandvaux, N; Fieschi, F; Faure, J; Massenet, C; Andrieu, JP; Fuchs, A; Vignais, PV; Timmins, PA; Dagher, MC; Pebay-Peyroula, E
      Small angle neutron scattering and gel filtration analyses of neutrophil NADPH oxidase cytosolic factors highlight the role of the C-terminal end of p47(phox) in the association with p40(phox)

      BIOCHEMISTRY
    14. Ago, T; Takeya, R; Hiroaki, H; Kuribayashi, F; Ito, T; Kohda, D; Sumimoto, H
      The PX domain as a novel phosphoinositide-binding module

      BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
    15. Cross, AR; Noack, D; Rae, J; Curnutte, JT; Heyworth, PG
      Hematologically important mutations: The autosomal recessive forms of chronic granulomatous disease (First update)

      BLOOD CELLS MOLECULES AND DISEASES
    16. Cross, AR
      p40(phox) participates in the activation of NADPH oxidase by increasing the affinity of p47(phox) for flavocytochrome b(558)

      BIOCHEMICAL JOURNAL
    17. Ambruso, DR; Knall, C; Abell, AN; Panepinto, J; Kurkchubasche, A; Thurman, G; Gonzalez-Aller, C; Hiester, A; deBoer, M; Harbeck, RJ; Oyer, R; Johnson, GL; Roos, D
      Human neutrophil immunodeficiency syndrome is associated with an inhibitory Rac2 mutation

      PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
    18. Tsunawaki, S; Yoshikawa, K
      Relationships of p40(phox) withp67(phox) in the activation and expression of the human respiratory burst NADPH oxidase

      JOURNAL OF BIOCHEMISTRY
    19. Vergnaud, S; Paclet, MH; El Benna, J; Pocidalo, MA; Morel, F
      Complementation of NADPH oxidase in p67-phox-deficient CGD patients - p67-phox/p40-phox interaction

      EUROPEAN JOURNAL OF BIOCHEMISTRY
    20. Shimohama, S; Tanino, H; Kawakami, N; Okamura, N; Kodama, H; Yamaguchi, T; Hayakawa, T; Nunomura, A; Chiba, S; Perry, G; Smith, MA; Fujimoto, S
      Activation of NADPH oxidase in Alzheimer's disease brains

      BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
    21. Szaszi, K; Korda, A; Wolfl, J; Paclet, MH; Morel, F; Ligeti, E
      Possible role of Rac-GTPase-activating protein in the termination of superoxide production in phagocytic cells

      FREE RADICAL BIOLOGY AND MEDICINE
    22. Vaissiere, C; Le Cabec, V; Maridonneau-Parini, I
      NADPH oxidase is functionally assembled in specific granules during activation of human neutrophils

      JOURNAL OF LEUKOCYTE BIOLOGY
    23. Noack, D; Rae, J; Cross, AR; Munoz, J; Salmen, S; Mendoza, JA; Rossi, N; Curnutte, JT; Heyworth, PG
      Autosomal recessive chronic granulomatous disease caused by novel mutations in NCF-2, the gene encoding the p67-phox component of phagocyte NADPH oxidase

      HUMAN GENETICS
    24. Cross, AR; Erickson, RW; Curnutte, JT
      The mechanism of activation of NADPH oxidase in the cell-free system: the activation process is primarily catalytic and not through the formation of a stoichiometric complex

      BIOCHEMICAL JOURNAL
    25. Cross, AR; Erickson, RW; Ellis, BA; Curnutte, JT
      Spontaneous activation of NADPH oxidase in a cell-free system: unexpected multiple effects of magnesium ion concentrations

      BIOCHEMICAL JOURNAL
    26. Razzouk, S; Lieberherr, M; Cournot, G
      Rac-GTPase, osteoclast cytoskeleton and bone resorption

      EUROPEAN JOURNAL OF CELL BIOLOGY
    27. Huang, J; Kleinberg, ME
      Activation of the phagocyte NADPH oxidase protein p47(phox) - Phosphorylation controls SH3 domain-dependent binding to p22(phox)

      JOURNAL OF BIOLOGICAL CHEMISTRY
    28. Hasebe, T; Someya, A; Nagaoka, I
      Identification of a splice variant mRNA of p40phox, an NADPH oxidase component of phagocytes

      FEBS LETTERS
    29. Patino, PJ; Rae, J; Noack, D; Erickson, R; Ding, JB; de Olarte, DG; Curnutte, JT
      Molecular characterization of autosomal recessive chronic granulomatous disease caused by a defect of the nicotinamide adenine dinucleotide phosphate(reduced form) oxidase component p67-phox

      BLOOD
    30. Rinckel, LA; Faris, SL; Hitt, ND; Kleinberg, ME
      Rac1 disrupts p67phox/p40phox binding: A novel role for Rac in NADPH oxidase activation

      BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
    31. Yaname, H; Fukunaga, T; Nigorikawa, K; Okamura, N; Ishibashi, S
      Pervanadate activates NADPH oxidase via protein kinase C-independent phosphorylation of p47-phox

      ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS
    32. HATA K; ITO T; TAKESHIGE K; SUMIMOTO H
      ANIONIC AMPHIPHILE-INDEPENDENT ACTIVATION OF THE PHAGOCYTE NADPH OXIDASE IN A CELL-FREE SYSTEM BY P47(PHOX) AND P67(PHOX), BOTH IN C-TERMINALLY TRUNCATED FORMS - IMPLICATION FOR REGULATORY SRC HOMOLOGY-3 DOMAIN-MEDIATED INTERACTIONS

      The Journal of biological chemistry
    33. BOUIN AP; GRANDVAUX N; VIGNAIS PV; FUCHS A
      P40(PHOX) IS PHOSPHORYLATED ON THREONINE-154 AND SERINE-315 DURING ACTIVATION OF THE PHAGOCYTE NADPH OXIDASE - IMPLICATION OF A PROTEIN-KINASE-C TYPE KINASE IN THE PHOSPHORYLATION PROCESS

      The Journal of biological chemistry
    34. Johnson, JL; Park, JW; El Benna, J; Faust, LP; Inanami, O; Babior, BM
      Activation of p47(PHOX), a cytosolic subunit of the leukocyte NADPH oxidase - Phosphorylation of Ser-359 or Ser-370 precedes phosphorylation at othersites and is required for activity

      JOURNAL OF BIOLOGICAL CHEMISTRY
    35. MIZUKI K; KADOMATSU K; HATA K; ITO T; FAN QW; KAGE Y; FUKUMAKI Y; SAKAKI Y; TAKESHIGE K; SUMIMOTO H
      FUNCTIONAL MODULES AND EXPRESSION OF MOUSE P40(PHOX) AND P67(PHOX), SH3-DOMAIN-CONTAINING PROTEINS - INVOLVED IN THE PHAGOCYTE NADPH OXIDASE COMPLEX

      European journal of biochemistry
    36. NAKAMURA R; SUMIMOTO H; MIZUKI K; HATA K; AGO T; KITAJIMA S; TAKESHIGE K; SAKAKI Y; ITO T
      THE PC MOTIF - A NOVEL AND EVOLUTIONARILY CONSERVED SEQUENCE INVOLVEDIN INTERACTION BETWEEN P40(PHOX) AND P67(PHOX), SH3 DOMAIN-CONTAININGCYTOSOLIC FACTORS OF THE PHAGOCYTE NADPH OXIDASE

      European journal of biochemistry
    37. FARIS SL; RINCKEL LA; HUANG J; HONG YR; KLEINBERG ME
      PHAGOCYTE NADPH OXIDASE P67-PHOX POSSESSES A NOVEL CARBOXYLTERMINAL BINDING-SITE FOR THE GTPASES RAC2 AND CDC42

      Biochemical and biophysical research communications
    38. DEMENDEZ I; HOMAYOUNPOUR N; LETO TL
      SPECIFICITY OF P47(PHOX) SH3 DOMAIN INTERACTIONS IN NADPH OXIDASE ASSEMBLY AND ACTIVATION

      Molecular and cellular biology
    39. NAKASHIMA S; IWASAKI Y; MIZUTANI T; OHGUCHI K; NAGATA K; KITAJIMA Y; NOZAWA Y
      DIFFERENTIAL EXPRESSION OF PROTEIN-KINASE-C ISOZYMES AND SMALL GTP-BINDING PROTEINS DURING HL60 CELL-DIFFERENTIATION BY RETINOIC ACID AND CYCLIC-AMP - RELATION WITH PHOSPHOLIPASE-D (PLD) ACTIVATION

      Immunobiology
    40. ORTEGACALVO M; MENDEZMORA JL
      THE CAUSES OF CELLULAR IMMUNOSUPPRESSION IN ADULTS

      Medicina Clinica
    41. GROGAN A; REEVES E; KEEP N; WIENTJES F; TOTTY NF; BURLINGAME AL; HSUAN JJ; SEGAL AW
      CYTOSOLIC PHOX PROTEINS INTERACT WITH AND REGULATE THE ASSEMBLY OF CORONIN IN NEUTROPHILS

      Journal of Cell Science
    42. SATHYAMOORTHY M; DEMENDEZ I; ADAMS AG; LETO TL
      P40(PHOX) DOWN-REGULATES NADPH OXIDASE ACTIVITY THROUGH INTERACTIONS WITH ITS SH3 DOMAIN

      The Journal of biological chemistry
    43. HATA K; TAKESHIGE K; SUMIMOTO H
      ROLES FOR PROLINE-RICH REGIONS OF P47PHOX AND P67PHOX IN THE PHAGOCYTE NADPH OXIDASE ACTIVATION IN-VITRO

      Biochemical and biophysical research communications
    44. SMITT JHS; LEUSEN JHW; STAS HG; TEEUW AH; WEENING RS
      CHRONIC BULLOUS DISEASE OF CHILDHOOD AND A PAECILOMYCES LUNG INFECTION IN CHRONIC GRANULOMATOUS-DISEASE

      Archives of Disease in Childhood
    45. CROSS AR; CURNUTTE JT; HEYWORTH PG
      HEMATOLOGICALLY IMPORTANT MUTATIONS - THE AUTOSOMAL RECESSIVE FORMS OF CHRONIC GRANULOMATOUS-DISEASE

      Blood cells, molecules, & diseases
    46. CHANOCK SJ; FAUST LRP; BARRETT D; CHRISTENSEN B; NEWBURGER PE; BABIOR BM
      PARTIAL RECONSTITUTION OF THE RESPIRATORY BURST OXIDASE IN LYMPHOBLASTOID B-CELL LINES LACKING P67-PHOX AFTER TRANSFECTION WITH AN EXPRESSION VECTOR CONTAINING WILD-TYPE AND MUTANT P67-PHOX CDNAS - DELETIONS OF THE CARBOXY AND AMINO-TERMINAL RESIDUES OF P67-PHOX ARE NOT REQUIREDFOR ACTIVITY

      Experimental hematology
    47. DUSI S; DONINI M; ROSSI F
      MECHANISMS OF NADPH OXIDASE ACTIVATION - TRANSLOCATION OF P40(PHOX), RAC1 AND RAC2 FROM THE CYTOSOL TO THE MEMBRANES IN HUMAN NEUTROPHILS LACKING P47(PHOX) OR P67(PHOX)

      Biochemical journal
    48. DEMENDEZ I; ADAMS AG; SOKOLIC RA; MALECH HL; LETO TL
      MULTIPLE SH3 DOMAIN INTERACTIONS REGULATE NADPH OXIDASE ASSEMBLY IN WHOLE CELLS

      EMBO journal
    49. ROOS D
      X-CGDBASE - A DATABASE OF X-CGD-CAUSING MUTATIONS

      Immunology today
    50. DELEO FR; ULMAN KV; DAVIS AR; JUTILA KL; QUINN MT
      ASSEMBLY OF THE HUMAN NEUTROPHIL NADPH OXIDASE INVOLVES BINDING OF P67(PHOX) AND FLAVOCYTOCHROME-B TO A COMMON FUNCTIONAL DOMAIN IN P47(PHOX)

      The Journal of biological chemistry
    51. ITO T; NAKAMURA R; SUMIMOTO H; TAKESHIGE K; SAKAKI Y
      AN SH3 DOMAIN-MEDIATED INTERACTION BETWEEN THE PHAGOCYTE NADPH OXIDASE FACTORS P40(PHOX) AND P47(PHOX)

      FEBS letters
    52. AOSHIMA M; NUNOI H; SHIMAZU M; SHIMIZU S; TATSUZAWA O; KENNEY RT; KANEGASAKI S
      2-EXON SKIPPING DUE TO A POINT MUTATION IN P67-PHOX-DEFICIENT CHRONICGRANULOMATOUS-DISEASE

      Blood
    53. DUSI S; DONINI M; ROSSI F
      MECHANISMS OF NADPH OXIDASE ACTIVATION IN HUMAN NEUTROPHILS - P67(PHOX) IS REQUIRED FOR THE TRANSLOCATION OF RAC-1 BUT NOT OF RAC-2 FROM CYTOSOL TO THE MEMBRANES

      Biochemical journal
    54. GREEN SP; HAMILTON JA; UHLINGER DJ; PHILLIPS WA
      EXPRESSION OF P47-PHOX AND P67-PHOX PROTEINS IN MURINE BONE-MARROW-DERIVED MACROPHAGES - ENHANCEMENT BY LIPOPOLYSACCHARIDE AND TUMOR-NECROSIS-FACTOR-ALPHA BUT NOT COLONY-STIMULATING FACTOR-1

      Journal of leukocyte biology
    55. ABO A; WEBB MR; GROGAN A; SEGAL AW
      ACTIVATION OF NADPH OXIDASE INVOLVES THE DISSOCIATION OF P21(RAC) FROM ITS INHIBITORY GDP GTP EXCHANGE PROTEIN (RHOGDI) FOLLOWED BY ITS TRANSLOCATION TO THE PLASMA-MEMBRANE/

      Biochemical journal
    56. MIYAMOTO D; SOMEYA A; NUNOI H; NAGAOKA I; YAMASHITA T
      ANALYSIS OF THE NADPH OXIDASE COMPONENTS DURING DIFFERENTIATION OF HL-60 CELLS TO EOSINOPHILIC LINEAGE

      Biochimica et biophysica acta. Molecular cell research
    57. MIYAMOTO D; SOMEYA A; NUNOI H; NAGAOKA I; YAMASHITA T
      ANALYSIS OF THE NADPH OXIDASE COMPONENTS DURING DIFFERENTIATION OF HL-60 CELLS TO EOSINOPHILIC LINEAGE

      Biochimica et biophysica acta. Molecular cell research
    58. LETO TL; ADAMS AG; DEMENDEZ I
      ASSEMBLY OF THE PHAGOCYTE NADPH OXIDASE - BINDING OF SRC HOMOLOGY-3 DOMAINS TO PROLINE-RICH TARGETS

      Proceedings of the National Academy of Sciences of the United Statesof America
    59. LETO TL; ADAMS AG; DEMENDEZ I
      ASSEMBLY OF THE PHAGOCYTE NADPH OXIDASE - BINDING OF SRC HOMOLOGY-3 DOMAINS TO PROLINE-RICH TARGETS

      Proceedings of the National Academy of Sciences of the United Statesof America
    60. LECABEC V; MOHN H; GACON G; MARIDONNEAUPARINI I
      THE SMALL GTP-BINDING PROTEIN RAC IS NOT RECRUITED TO THE PLASMA-MEMBRANE UPON NADPH OXIDASE ACTIVATION IN HUMAN NEUTROPHILS

      Biochemical and biophysical research communications
    61. MIZUNARI H; KURATSUJI T; NAMIKI H; TSUNAWAKI S
      ACTIVATION OF RESPIRATORY BURST OXIDASE IS ACCOMPANIED BY DESENSITIZATION OF P47(PHOX) IN NUCLEOSIDE-TRIPHOSPHATE BINDING ALONG WITH ITS TRANSLOCATION TO CELL-MEMBRANE

      Biochemical and biophysical research communications
    62. WIENTJES FB; HSUAN JJ; TOTTY NF; SEGAL AW
      P40(PHOX), A 3RD CYTOSOLIC COMPONENT OF THE ACTIVATION COMPLEX OF THENADPH OXIDASE TO CONTAIN SRC HOMOLOGY 3 DOMAINS

      Biochemical journal
    63. SOMEYA A; NAGAOKA I; YAMASHITA T
      PURIFICATION OF THE 260 KDA CYTOSOLIC COMPLEX INVOLVED IN THE SUPEROXIDE PRODUCTION OF GUINEA-PIG NEUTROPHILS

      FEBS letters


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Documento generato il 05/06/20 alle ore 05:11:12