β 1 integrin function in vivo: Adhesion, migration and more (original) (raw)

References

  1. Brakebusch C, Bouvard D, Stanchi F, Sakai T, Fässler R: Integrins in invasive growth. J Clin Invest 109: 999–1006, 2002
    Article PubMed Google Scholar
  2. Hynes RO: Integrins: bidirectional, allosteric signaling machines. Cell 110: 673–687, 2002
    Article PubMed Google Scholar
  3. Liu S, Calderwood DA, Ginsberg MH: Integrin cytoplasmic domain-binding proteins. J Cell Sci 113: 3563–3571, 2000
    PubMed Google Scholar
  4. Brakebusch C, Fässler R: The integrin-actin connection, an eternal love affair. EMBO J 22: 2324–2333, 2003
    Article PubMed Google Scholar
  5. Hannigan GE, Leung-Hagesteijn C, Fitz-Gibbon L, Coppolino MG, Radeva G, Filmus J, Bell JC, Dedhar S: Regulation of cell adhesion and anchorage-dependent growth by a new β1-integrin-linked protein kinase. Nature 379: 91–96, 1996
    Article PubMed Google Scholar
  6. Zervas CG, Gregory SL, Brown NH: Drosophila integrin-linked kinase is required at sites of integrin adhesion to link the cytoskeleton to the plasma membrane. J Cell Biol 152: 1007–1018, 2001
    Article PubMed Google Scholar
  7. Mackinnon AC, Qadota H, Norman KR, Moerman DG, Williams BD: C. elegans PAT-4/ILK functions as an adaptor protein within integrin adhesion complexes. Curr Biol 12: 787–797, 2002
    Article PubMed Google Scholar
  8. Sakai T, Li S, Docheva D, Grashoff C, Sakai K, Kostka G, Braun A, Pfeifer A, Yurchenco PD, Fässler R: Integrin-linked kinase (ILK) is required for polarizing the epiblast, cell adhesion, and controlling actin accumulation. Genes Dev 17: 926–940, 2003
    Article PubMed Google Scholar
  9. Grashoff C, Aszodi A, Sakai T, Hunziker EB, Fässler R: Integrin-linked kinase regulates chondrocyte shape and proliferation. EMBO Rep 4: 432–438, 2003
    Article PubMed Google Scholar
  10. Brown EJ: Integrin-associated proteins. Curr Opin Cell Biol 14: 603–607, 2002
    Article PubMed Google Scholar
  11. Moro L, Dolce L, Cabodi S, Bergatto E, Erba EB, Smeriglio M, Turco E, Retta SF, Giuffrida MG, Venturino M, Godovac-Zimmermann J, Conti A, Schaefer E, Beguinot L, Tacchett,i C, Gaggini P, Silengo L, Tarone G, Defilippi P: Integrin-induced epidermal growth factor (EGF) receptor activation requires c-Src and p130Cas and leads to phosphorylation of specific EGF receptor tyrosines. J Biol. Chem 277: 9405–9414, 2002
    Article PubMed Google Scholar
  12. Wei Y, Eble JA, Wang Z, Kreidberg JA, Chapman HA: Urokinase receptors promote β1 integrin function through interactions with integrin α3β1. Mol Biol Cell 12: 2975–2986, 2001
    PubMed Google Scholar
  13. Wang XQ, Lindberg FP, Frazier WA: Integrin-associated protein stimulates α2β1-dependent chemotaxis via Gi-mediated inhibition of adenylate cyclase and extracellular-regulated kinases. J Cell Biol 147: 389–400, 1999
    Article PubMed Google Scholar
  14. Erb L, Liu J, Ockerhausen J, Kong Q, Garrad RC, Griffin K, Neal C, Krugh B, Santiago-Perez LI, Gonzalez FA, Gresham HD, Turner JT, Weisman GA: An RGD sequence in the P2Y(2) receptor interacts with αvβ3 integrins and is required for G(o)-mediated signal transduction. J Cell Biol 153: 491–501, 2001
    Article PubMed Google Scholar
  15. Decker L, Baron W, Ffrench-Constant C: Lipid rafts: Microenvironments for integrin-growth factor interactions in neural development. Biochem. Soc Trans 32: 426–430, 2004
    Article PubMed Google Scholar
  16. Bodeau AL, Berrier AL, Mastrangelo AM, Martinez R, LaFlamme SE: A functional comparison of mutations in integrin β cytoplasmic domains: effects on the regulation of tyrosine phosphorylation, cell spreading, cell attachment and β1 integrin conformation. J Cell Sci 114: 2795–2807, 2001
    PubMed Google Scholar
  17. Fässler R, Meyer M: Consequences of lack of β1 integrin gene expression in mice. Genes Dev 9: 1896–1908, 1995
    PubMed Google Scholar
  18. Stephens LE, Sutherland AE, Klimanskaya IV, Andrieux A, Meneses J, Pedersen RA, Damsky CH: Deletion of β1 integrins in mice results in inner cell mass failure and peri-implantation lethality. Genes Dev 9: 1883–1895, 1995
    PubMed Google Scholar
  19. Aumailley M, Pesch M, Tunggal L, Gaill F, Fässler R: Altered synthesis of laminin 1 and absence of basement membrane component deposition in β1 integrin-deficient embryoid bodies. J Cell Sci 113: 259–268, 2001
    Google Scholar
  20. Li S, Harrison D, Carbonetto S, Fässler R, Smyth N, Edgar D, Yurchenco PD: Matrix assembly, regulation, and survival functions of laminin and its receptors in embryonic stem cell differentiation. J Cell Biol 157: 1279–1290, 2002
    Article PubMed Google Scholar
  21. Henry MD, Campbell KP: A role for dystroglycan in basement membrane assembly. Cell 95: 859–870, 1998
    Article PubMed Google Scholar
  22. Brown NH, Gregory SL, Rickoll WL, Fessler LI, Prout M, White RA, Fristrom JW: Talin is essential for integrin function in Drosophila. Dev Cell 3: 569–579, 2002
    Article PubMed Google Scholar
  23. Monkley SJ, Zhou XH, Kinston SJ, Giblett SM, Hemmings L, Priddle H, Brown JE, Pritchard CA, Critchley DR, Fässler R: Disruption of the talin gene arrests mouse development at the gastrulation stage. Dev Dyn 219: 560–574, 2000
    PubMed Google Scholar
  24. Hirsch E, Barberis L, Brancaccio M, Azzolino O, Xu D, Kyriakis JM, Silengo L, Giancotti FG, Tarone G, Fässler R, Altruda F: Defective Rac-mediated proliferation and survival after targeted mutation of the β1 integrin cytodomain. J Cell Biol 157: 481–492, 2002
    Article PubMed Google Scholar
  25. Brakebusch C, Grose R, Quondamatteo F, Ramirez A, Jorcano JL, Pirro A, Svensson M, Herken R, Sasaki T, Timpl R, Werner S, Fässler R: Skin and hair follicle integrity is crucially dependent on β1 integrin expression on keratinocytes. EMBO J 19: 3990–4003, 2000
    Article PubMed Google Scholar
  26. Raghavan S, Bauer C, Mundschau G, Li Q, Fuchs E: Conditional ablation of β1 integrin in skin. Severe defects in epidermal proliferation, basement membrane formation, and hair follicle invagination. J Cell Biol 150: 1149–1160, 2000
    Article PubMed Google Scholar
  27. Graus-Porta D, Blaess S, Senften M, Littlewood–Evans A, Damsky C, Huang Z, Orban P, Klein R, Schittny JC, Müller U: β1-class integrins regulate the development of laminae and folia in the cerebral and cerebellar cortex. Neuron 31: 367–379, 2001
    Article PubMed Google Scholar
  28. Michno K, Boras-Granic K, Mill P, Hui CC, Hamel PA: Shh expression is required for embryonic hair follicle but not mammary gland development. Dev. Biol 264: 153–165, 2003
    Article PubMed Google Scholar
  29. St-Jacques B, Dassule HR, Karavanova I, Botchkarev VA, Li J, Danielian PS, McMahon JA, Lewis PM, Paus R, McMahon AP: Sonic hedgehog signaling is essential for hair development. Curr Biol 8: 1058–1068, 1998
    Article PubMed Google Scholar
  30. Pons S, Trejo JL, Martinez-Morales JR, Marti E: Vitronectin regulates Sonic hedgehog activity during cerebellum development through CREB phosphorylation. Development 128: 1481–1492, 2001
    PubMed Google Scholar
  31. Blaess S, Graus-Porta D, Belvindrah R, Radakovits R, Pons S, Littlewood-Evans A, Senften M, Guo H, Li Y, Miner JH, Reichardt LF, Müller U: β1-integrins are critical for cerebellar granule cell precursor proliferation. J Neurosci 24: 3402–3412, 2004
    Article PubMed Google Scholar
  32. Campos LS, Leone DP, Relvas JB, Brakebusch C, Fässler R, Suter U, ffrench-Constant, C: β1 integrins activate a MAPK signalling pathway in neural stem cells that contributes to their maintenance. Development 131: 3433–3444, 2004
    Article PubMed Google Scholar
  33. Grose R, Hutter C, Bloch W, Thorey I, Watt FM, Fässler R, Brakebusch C, Werner S: A crucial role of β1 integrins for keratinocyte migration in vitro and during cutaneous wound repair. Development 129: 2303–2315, 2002
    PubMed Google Scholar
  34. Raghavan S, Vaezi A, Fuchs E: A role for α β1 integrins in focal adhesion function and polarized cytoskeletal dynamics. Dev Cell 5: 415–427, 2003
    Article PubMed Google Scholar
  35. Aszodi A, Hunziker EB, Brakebusch C, Fässler R: β1 integrins regulate chondrocyte rotation, G1 progression, and cytokinesis. Genes Dev 17: 2465–2479, 2003
    Article PubMed Google Scholar
  36. Karsenty G, Wagner EF: Reaching a genetic and molecular understanding of skeletal development. Dev Cell 2: 389–406, 2002
    Article PubMed Google Scholar
  37. Terpstra L, Prud'homme J, Arabian A, Takeda S, Karsenty G, Dedhar S, St-Arnaud R: Reduced chondrocyte proliferation and chondrodysplasia in mice lacking the integrin-linked kinase in chondrocytes. J Cell Biol 162: 139–148, 2003
    Article PubMed Google Scholar
  38. Hirsch E, Iglesias A, Potocnik AJ, Hartmann U, Fässler R: Impaired migration but not differentiation of haematopoietic stem cells in the absence of β1 integrins. Nature 380: 171–175, 1996
    Article PubMed Google Scholar
  39. Potocnik AJ, Brakebusch C, Fässler R: Fetal and adult hematopoietic stem cells require β1 integrin function for colonizing fetal liver, spleen, and bone marrow. Immunity 12: 653–663, 2000
    Article PubMed Google Scholar
  40. Brakebusch C, Fillatreau S, Potocnik AJ, Bungartz G, Wilhelm P, Svensson M, Kearney P, Körner H, Gray D, Fässler R: β1 integrin is not essential for hematopoiesis but is necessary for the T cell-dependent IgM antibody response. Immunity 16: 465–477, 2002
    Article PubMed Google Scholar
  41. von Andrian UH, Engelhardt B: α 4 integrins as therapeutic targets in autoimmune disease. N Engl J Med 348: 68–72, 2003
    Article PubMed Google Scholar
  42. Nieswandt B, Brakebusch C, Bergmeier W, Schulte V, Bouvard D, Mokhtari-Nejad R, Lindhout T, Heemskerk JW, Zirngibl H, Fässler R: Glycoprotein VI but not α2β1 integrin is essential for platelet interaction with collagen. EMBO J 20: 2120–2130, 2001
    Article PubMed Google Scholar
  43. Holtkötter O, Nieswandt B, Smyth N, Müller W, Hafner M, Schulte V, Krieg T, Eckes B: Integrin α2-deficient mice develop normally, are fertile, but display partially defective platelet interaction with collagen. J Biol Chem 277: 10789–10794, 2002
    Article PubMed Google Scholar
  44. Chen J, Diacovo TG, Grenache DG, Santoro SA, Zutter MM: The α2 integrin subunit-deficient mouse: A multifaceted phenotype including defects of branching morphogenesis and hemostasis. Am J Pathol 161: 337–344, 2002
    PubMed Google Scholar
  45. Kuijpers MJ, Schulte V, Bergmeier W, Lindhout T, Brakebusch C, Offermanns S, Fässler R, Heemskerk JW, Nieswandt B: Complementary roles of glycoprotein VI and α2β1 integrin in collagen-induced thrombus formation in flowing whole blood ex vivo. FASEB J 17: 685–687, 2003
    PubMed Google Scholar
  46. Gruner S, Prostredna M, Schulte V, Krieg T, Eckes B, Brakebusch C, Nieswandt B: Multiple integrin-ligand interactions synergize in shear-resistant platelet adhesion at sites of arterial injury in vivo. Blood 102: 4021–4027, 2003
    Article PubMed Google Scholar
  47. Hirsch E, Lohikangas L, Gullberg D, Johansson S, Fässler R: Mouse myoblasts can fuse and form a normal sarcomere in the absence of β1 integrin expression. J Cell Sci 111: 2397–2409, 1998
    PubMed Google Scholar
  48. Schwander M, Leu M, Stumm M, Dorchies OM, Ruegg UT, Schittny J, Müller U: β1 integrins regulate myoblast fusion and sarcomere assembly. Dev Cell 4: 673–685, 2003
    Article PubMed Google Scholar
  49. Hemler ME: Specific tetraspanin functions. J Cell Biol 155: 1103–1107, 2001
    Article PubMed Google Scholar
  50. Brakebusch C, Wennerberg K, Krell HW, Weidle UH, Sallmyr A, Johansson S, Fässler R: β1 integrin promotes but is not essential for metastasis of ras-myc transformed fibroblasts. Oncogene 18: 3852–3861, 1999
    Article PubMed Google Scholar
  51. Stroeken PJ, van Rijthoven EA, van der Valk MA, Roos E: Targeted disruption of the β1 integrin gene in a lymphoma cell line greatly reduces metastatic capacity. Cancer Res 58: 1569–1577, 1998
    PubMed Google Scholar
  52. Stroeken PJ, van Rijthoven EA, Boer E, Geerts D, Roos E: Cytoplasmic domain mutants of β1 integrin, expressed in β1-knockout lymphoma cells, have distinct effects on adhesion, invasion and metastasis. Oncogene. 19: 1232–1238, 2000
    Article PubMed Google Scholar
  53. White DE, Kurpios NA, Zuo D, Hassell JA, Blaess S, Mueller U, Muller WJ: Targeted disruption of β1-integrin in a transgenic mouse model of human breast cancer reveals an essential role in mammary tumor induction. Cancer Cell 6: 159–170, 2004
    Article PubMed Google Scholar
  54. Balkwill F: Cancer and the chemokine network. Nat Rev Cancer 4: 540–550, 2004
    Article PubMed Google Scholar
  55. Cardones AR, Murakami T, Hwang ST: CXCR4 enhances adhesion of B16 tumor cells to endothelial cells in vitro and in vivo via β1 integrin. Cancer Res 63: 6751–6757, 2003
    PubMed Google Scholar

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