225
Views
42
CrossRef citations to date
0
Altmetric
Articles

Expression and release of angiopoietin-1 from human neutrophils: Intracellular mechanisms

, , &
Pages 335-344 | Received 29 Jan 2009, Accepted 29 Jun 2009, Published online: 18 Nov 2009

References

  • Ancelin M, Chollet-Martin S, Herve MA, Legrand C, El Benna J, Perrot-Applanat M. 2004. Vascular endothelial growth factor VEGF189 induces human neutrophil chemotaxis in extravascular tissue via an autocrine amplification mechanism. Lab Invest. 84 4: 502–512.
  • Baranes D, Matzner J, Razin E. 1986. Thrombin-induced calcium-independent degranulation of human neutrophils. Inflammation. 10 4: 455–461.
  • Boxer LA, Axtell R, Suchard S. 1990. The role of the neutrophil in inflammatory diseases of the lung. Blood Cells. 16 1: 25–40 discussion 41–42.
  • Brkovic A, Pelletier M, Girard D, Sirois MG. 2007. Angiopoietin chemotactic activities on neutrophils are regulated by PI-3K activation. J Leukoc Biol. 81 4: 1093–1101.
  • Carmeliet P. 2000. Mechanisms of angiogenesis and arteriogenesis. Nat Med. 6 4: 389–395.
  • Carmeliet P. 2003. Angiogenesis in health and disease. Nat Med. 9 6: 653–660.
  • Carmeliet P, Jain RK. 2000. Angiogenesis in cancer and other diseases. Nature. 407 6801: 249–257.
  • Chibber R, Castle AG. 1983. Subcellular fractionation of porcine neutrophils by nitrogen cavitation and sucrose-density-gradient centrifugation. Eur J Biochem. 136 2: 383–389.
  • Currie MS, Rao KM, Padmanabhan J, Jones A, Crawford J, Cohen HJ. 1990. Stimulus-specific effects of pentoxifylline on neutrophil CR3 expression, degranulation, and superoxide production. J Leukoc Biol. 47 3: 244–250.
  • Davis S, Aldrich TH, Jones PF, Acheson A, Compton DL, Jain V, Ryan TE, Bruno J, Radziejewski C, Maisonpierre PC, Yancopoulos GD. 1996. Isolation of angiopoietin-1, a ligand for the TIE2 receptor, by secretion-trap expression cloning. Cell. 87 7: 1161–1169.
  • de Muinck ED, Simons M. 2004. Re-evaluating therapeutic neovascularization. J Mol Cell Cardiol. 36 1: 25–32.
  • DeBusk LM, Chen Y, Nishishita T, Chen J, Thomas JW, Lin PC. 2003. Tie2 receptor tyrosine kinase, a major mediator of tumor necrosis factor alpha-induced angiogenesis in rheumatoid arthritis. Arthritis Rheum. 48 9: 2461–2471.
  • Dor Y, Djonov V, Abramovitch R, Itin A, Fishman GI, Carmeliet P, Goelman G, Keshet E. 2002. Conditional switching of VEGF provides new insights into adult neovascularization and pro-angiogenic therapy. EMBO J. 21 8: 1939–1947.
  • Faurschou M, Borregaard N. 2003. Neutrophil granules and secretory vesicles in inflammation. Microbes Infect. 5 14: 1317–1327.
  • Feistritzer C, Mosheimer BA, Sturn DH, Bijuklic K, Patsch JR, Wiedermann CJ. 2004. Expression and function of the angiopoietin receptor Tie-2 in human eosinophils. J Allergy Clin Immunol. 114 5: 1077–1084.
  • Folkman J. 2002. Role of angiogenesis in tumor growth and metastasis. Semin Oncol. 29 6 Suppl 16: 15–18.
  • Gaudry M, Bregerie O, Andrieu V, El Benna J, Pocidalo MA, Hakim J. 1997. Intracellular pool of vascular endothelial growth factor in human neutrophils. Blood. 90 10: 4153–4161.
  • Hashiramoto A, Sakai C, Yoshida K, Tsumiyama K, Miura Y, Shiozawa K, Nose M, Komai K, Shiozawa S. 2007. Angiopoietin 1 directly induces destruction of the rheumatoid joint by cooperative, but independent, signaling via ERK/MAPK and phosphatidylinositol 3-kinase/Akt. Arthritis Rheum. 56 7: 2170–2179.
  • Hayes AJ, Huang WQ, Yu J, Maisonpierre PC, Liu A, Kern FG, Lippman ME, McLeskey SW, Li LY. 2000. Expression and function of angiopoietin-1 in breast cancer. Br J Cancer. 83 9: 1154–1160.
  • Hegen A, Koidl S, Weindel K, Marme D, Augustin HG, Fiedler U. 2004. Expression of angiopoietin-2 in endothelial cells is controlled by positive and negative regulatory promoter elements. Arterioscler Thromb Vasc Biol. 24 10: 1803–1809.
  • Hu B, Jarzynka MJ, Guo P, Imanishi Y, Schlaepfer DD, Cheng SY. 2006. Angiopoietin 2 induces glioma cell invasion by stimulating matrix metalloprotease 2 expression through the alphavbeta1 integrin and focal adhesion kinase signaling pathway. Cancer Res. 66 2: 775–783.
  • Jones N, Iljin K, Dumont DJ, Alitalo K. 2001. Tie receptors: New modulators of angiogenic and lymphangiogenic responses. Nat Rev Mol Cell Biol. 2 4: 257–267.
  • Kerbel R, Folkman J. 2002. Clinical translation of angiogenesis inhibitors. Nat Rev Cancer. 2 10: 727–739.
  • Kitsis E, Weissmann G. 1991. The role of the neutrophil in rheumatoid arthritis. Clin Orthop Relat. Res 265: 63–72.
  • Kjeldsen L, Sengelov H, Borregaard N. 1999. Subcellular fractionation of human neutrophils on Percoll density gradients. J Immunol Methods. 232 1–2: 131–143.
  • Klebanoff SJ, Vadas MA, Harlan JM, Sparks LH, Gamble JR, Agosti JM, Waltersdorph AM. 1986. Stimulation of neutrophils by tumor necrosis factor. J Immunol. 136 11: 4220–4225.
  • Kukk E, Wartiovaara U, Gunji Y, Kaukonen J, Buhring HJ, Rappold I, Matikainen MT, Vihko P, Partanen J, Palotie A, Alitalo K, Alitalo R. 1997. Analysis of Tie receptor tyrosine kinase in haemopoietic progenitor and leukaemia cells. Br J Haematol. 98 1: 195–203.
  • Lee OH, Xu J, Fueyo J, Fuller GN, Aldape KD, Alonso MM, Piao Y, Liu TJ, Lang FF, Bekele BN, Gomez-Manzano C. 2006. Expression of the receptor tyrosine kinase Tie2 in neoplastic glial cells is associated with integrin beta1-dependent adhesion to the extracellular matrix. Mol Cancer Res. 4 12: 915–926.
  • Lemieux C, Maliba R, Favier J, Theoret JF, Merhi Y, Sirois MG. 2005. Angiopoietins can directly activate endothelial cells and neutrophils to promote proinflammatory responses. Blood. 105 4: 1523–1530.
  • Li JJ, Huang YQ, Basch R, Karpatkin S. 2001. Thrombin induces the release of angiopoietin-1 from platelets. Thromb Haemost. 85 2: 204–206.
  • Maisonpierre PC, Suri C, Jones PF, Bartunkova S, Wiegand SJ, Radziejewski C, Compton D, McClain J, Aldrich TH, Papadopoulos N, Daly TJ, Davis S, Sato TN, Yancopoulos GD. 1997. Angiopoietin-2, a natural antagonist for Tie2 that disrupts in vivo angiogenesis. Science. 277 5322: 55–60.
  • Makinde T, Agrawal DK. Intra and extra-vascular trans-membrane signaling of angiopoietin-1-Tie2 receptor in health and disease. J Cell Mol. 2008Med.
  • Maliba R, Lapointe S, Neagoe PE, Brkovic A, Sirois MG. 2006. Angiopoietins-1 and -2 are both capable of mediating endothelial PAF synthesis: Intracellular signalling pathways. Cell Signal. 18 11: 1947–1957.
  • Maliba R, Brkovic A, Neagoe PE, Villeneuve LR, Sirois MG. 2008. Angiopoietin-mediated endothelial P-selectin translocation: Cell signaling mechanisms. J Leukoc Biol. 83 2: 352–360.
  • Mochizuki Y, Nakamura T, Kanetake H, Kanda S. 2002. Angiopoietin 2 stimulates migration and tube-like structure formation of murine brain capillary endothelial cells through c-Fes and c-Fyn. J Cell Sci 115(Pt. 1:175–183.
  • Murdoch C, Tazzyman S, Webster S, Lewis CE. 2007. Expression of Tie-2 by human monocytes and their responses to angiopoietin-2. J Immunol. 178 11: 7405–7411.
  • Nakayama T, Hatachi G, Wen CY, Yoshizaki A, Yamazumi K, Niino D, Sekine I. 2005. Expression and significance of Tie-1 and Tie-2 receptors, and angiopoietins-1, 2 and 4 in colorectal adenocarcinoma: Immunohistochemical analysis and correlation with clinicopathological factors. World J Gastroenterol. 11 7: 964–969.
  • Nishishita T, Lin PC. 2004. Angiopoietin 1, PDGF-B, and TGF-beta gene regulation in endothelial cell and smooth muscle cell interaction. J Cell Biochem. 91 3: 584–593.
  • O'Flaherty JT. 1985. Neutrophil degranulation: Evidence pertaining to its mediation by the combined effects of leukotriene B4, platelet-activating factor, and 5-HETE. J Cell Physiol. 122 2: 229–239.
  • Renko M, Quarto N, Morimoto T, Rifkin DB. 1990. Nuclear and cytoplasmic localization of different basic fibroblast growth factor species. J Cell Physiol. 144 1: 108–114.
  • Richter J, Andersson T, Olsson I. 1989. Effect of tumor necrosis factor and granulocyte/macrophage colony-stimulating factor on neutrophil degranulation. J Immunol. 142 9: 3199–3205.
  • Sallenave JM, Si Tahar M, Cox G, Chignard M, Gauldie J. 1997. Secretory leukocyte proteinase inhibitor is a major leukocyte elastase inhibitor in human neutrophils. J Leukoc Biol. 61 6: 695–702.
  • Seligmann BE, Fletcher MP, Gallin JI. 1983. Histamine modulation of human neutrophil oxidative metabolism, locomotion, degranulation, and membrane potential changes. J Immunol. 130 4: 1902–1909.
  • Sengelov H, Kjeldsen L, Borregaard N. 1993. Control of exocytosis in early neutrophil activation. J Immunol. 150 4: 1535–1543.
  • Senger DR, Galli SJ, Dvorak AM, Perruzzi CA, Harvey VS, Dvorak HF. 1983. Tumor cells secrete a vascular permeability factor that promotes accumulation of ascites fluid. Science. 219 4587: 983–985.
  • Shahrara S, Volin MV, Connors MA, Haines GK, Koch AE. 2002. Differential expression of the angiogenic Tie receptor family in arthritic and normal synovial tissue. Arthritis Res. 4 3: 201–208.
  • Shalaby F, Rossant J, Yamaguchi TP, Gertsenstein M, Wu XF, Breitman ML, Schuh AC. 1995. Failure of blood-island formation and vasculogenesis in Flk-1-deficient mice. Nature. 376 6535: 62–66.
  • Shaw JP, Basch R, Shamamian P. 2004. Hematopoietic stem cells and endothelial cell precursors express Tie-2, CD31 and CD45. Blood Cells Mol Dis. 32 1: 168–175.
  • Shen L, Smith JM, Shen Z, Eriksson M, Sentman C, Wira CR. 2007. Inhibition of human neutrophil degranulation by transforming growth factor-beta1. Clin Exp Immunol. 149 1: 155–161.
  • Shyu KG, Chang H, Isner JM. 2003. Synergistic effect of angiopoietin-1 and vascular endothelial growth factor on neoangiogenesis in hypercholesterolemic rabbit model with acute hindlimb ischemia. Life Sci. 73 5: 563–579.
  • Stratmann A, Risau W, Plate KH. 1998. Cell type-specific expression of angiopoietin-1 and angiopoietin-2 suggests a role in glioblastoma angiogenesis. Am J Pathol. 153 5: 1459–1466.
  • Sturn DH, Feistritzer C, Mosheimer BA, Djanani A, Bijuklic K, Patsch JR, Wiedermann CJ. 2005. Angiopoietin affects neutrophil migration. Microcirculation. 12 5: 393–403.
  • Sundberg C, Kowanetz M, Brown LF, Detmar M, Dvorak HF. 2002. Stable expression of angiopoietin-1 and other markers by cultured pericytes: Phenotypic similarities to a subpopulation of cells in maturing vessels during later stages of angiogenesis in vivo. Lab Invest. 82 4: 387–401.
  • Suri C, McClain J, Thurston G, McDonald DM, Zhou H, Oldmixon EH, Sato TN, Yancopoulos GD. 1998. Increased vascularization in mice overexpressing angiopoietin-1. Science. 282 5388: 468–471.
  • Tait CR, Jones PF. 2004. Angiopoietins in tumours: The angiogenic switch. J Pathol. 204 1: 1–10.
  • Takahara K, Iioka T, Furukawa K, Uchida T, Nakashima M, Tsukazaki T, Shindo H. 2004. Autocrine/paracrine role of the angiopoietin-1 and -2/Tie2 system in cell proliferation and chemotaxis of cultured fibroblastic synoviocytes in rheumatoid arthritis. Hum Pathol. 35 2: 150–158.
  • Teichert-Kuliszewska K, Maisonpierre PC, Jones N, Campbell AI, Master Z, Bendeck MP, Alitalo K, Dumont DJ, Yancopoulos GD, Stewart DJ. 2001. Biological action of angiopoietin-2 in a fibrin matrix model of angiogenesis is associated with activation of Tie2. Cardiovasc Res. 49 3: 659–670.
  • Thurston G, Suri C, Smith K, McClain J, Sato TN, Yancopoulos GD, McDonald DM. 1999. Leakage-resistant blood vessels in mice transgenically overexpressing angiopoietin-1. Science. 286 5449: 2511–2514.
  • Uchida T, Nakashima M, Hirota Y, Miyazaki Y, Tsukazaki T, Shindo H. 2000. Immunohistochemical localisation of protein tyrosine kinase receptors Tie-1 and Tie-2 in synovial tissue of rheumatoid arthritis: Correlation with angiogenesis and synovial proliferation. Ann Rheum Dis. 59 8: 607–614.
  • Wright DG, Bralove DA, Gallin JI. 1977. The differential mobilization of human neutrophil granules. Effects of phorbol myristate acetate and ionophore A23187. Am J Pathol. 87 2: 237–284.
  • Yancopoulos GD, Davis S, Gale NW, Rudge JS, Wiegand SJ, Holash J. 2000. Vascular-specific growth factors and blood vessel formation. Nature. 407 6801: 242–248.
  • Yasuda M, Tanaka Y, Tamura M, Fujii K, Sugaya M, So T, Takenoyama M, Yasumoto K. 2001. Stimulation of beta1 integrin down-regulates ICAM-1 expression and ICAM-1-dependent adhesion of lung cancer cells through focal adhesion kinase. Cancer Res. 61 5: 2022–2030.
  • Zimmerman BJ, Granger DN. 1994. Mechanisms of reperfusion injury. Am J Med Sci. 307 4: 284–292.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.