Home LiteratureArticle Details
PMID: 11891202 Published · ppublish English Journal Article

Mice lacking Smad3 are protected against cutaneous injury induced by ionizing radiation.

The American journal of pathology ·Vol. 160 ·No. 3 ·2002-03-00 ·Pages 1057-68

Flanders KC, Sullivan CD, Fujii M, Sowers A, Anzano MA, Arabshahi A, Major C, Deng C, Russo A, Mitchell JB, Roberts AB

Abstract

Transforming growth factor-beta (TGF-beta) plays a central role in the pathogenesis of inflammatory and fibrotic diseases, including radiation-induced fibrosis. We previously reported that mice null for Smad3, a key downstream mediator of TGF-beta, show accelerated healing of cutaneous incisional wounds with reduced inflammation and accumulation of matrix. To determine if loss of Smad3 decreases radiation-induced injury, skin of Smad3+/+ [wild-type (WT)] and -/- [knockout (KO)] mice was exposed to a single dose of 30 to 50 Gy of gamma-irradiation. Six weeks later, skin from KO mice showed significantly less epidermal acanthosis and dermal influx of mast cells, macrophages, and neutrophils than skin from WT littermates. Skin from irradiated KO mice exhibited less immunoreactive TGF-beta and fewer myofibroblasts, suggesting that these mice will have a significantly reduced fibrotic response. Although irradiation induced no change in the immunohistochemical expression of the TGF-beta type I receptor, the epidermal expression of the type II receptor was lost after irradiation whereas its dermal expression remained high. Primary keratinocytes and dermal fibroblasts prepared from WT and KO mice showed similar survival when irradiated, as did mice exposed to whole-body irradiation. These results suggest that inhibition of Smad3 might decrease tissue damage and reduce fibrosis after exposure to ionizing irradiation.

MeSH Terms
Animals Cell Survival/radiation effects DNA-Binding Proteins/genetics,physiology Fibroblasts/pathology,physiology,radiation effects Gamma Rays Keratinocytes/pathology,physiology,radiation effects Mice Mice, Knockout Radiation Injuries, Experimental/genetics,physiopathology,prevention & control Skin/pathology,radiation effects Smad3 Protein Trans-Activators/genetics,physiology Transforming Growth Factor beta/physiology
Chemicals
DNA-Binding Proteins Smad3 Protein Smad3 protein, mouse Trans-Activators Transforming Growth Factor beta
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Flanders Kathleen C
Laboratory of Cell Regulation and Carcinogenesis and Radiation Biology Branch, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892-5055, USA. flanderk@dce41.nci.nih.gov
Sullivan Catherine D
Fujii Makiko
Sowers Anastasia
Anzano Mario A
Arabshahi Alidad
Major Christopher
Deng Chuxia
Russo Angelo
Mitchell James B
Roberts Anita B
References (63)
63 references, click to expand
  1. Differential regulation of keratinocyte growth factor and hepatocyte growth factor/scatter factor by different cytokines in human corneal and limbal fibroblasts.
    J Cell Physiol. 1997 Sep;172(3):361-72 PMID: 9284956
  2. Protection from radiation-induced alopecia with topical application of nitroxides: fractionated studies.
    Cancer J Sci Am. 1996 Sep-Oct;2(5):273-8 PMID: 9166544
  3. Genomic instability in the type II TGF-beta1 receptor gene in atherosclerotic and restenotic vascular cells.
    J Clin Invest. 1997 Nov 1;100(9):2182-8 PMID: 9410894
  4. Smad2 signaling in extraembryonic tissues determines anterior-posterior polarity of the early mouse embryo.
    Cell. 1998 Mar 20;92(6):797-808 PMID: 9529255
  5. SMADs: mediators and regulators of TGF-beta signaling.
    Curr Opin Genet Dev. 1998 Feb;8(1):103-11 PMID: 9529613
  6. Smad2 role in mesoderm formation, left-right patterning and craniofacial development.
    Nature. 1998 Jun 25;393(6687):786-90 PMID: 9655392
  7. Human Smad3 and Smad4 are sequence-specific transcription activators.
    Mol Cell. 1998 Mar;1(4):611-7 PMID: 9660945
  8. Failure of egg cylinder elongation and mesoderm induction in mouse embryos lacking the tumor suppressor smad2.
    Proc Natl Acad Sci U S A. 1998 Aug 4;95(16):9378-83 PMID: 9689088
  9. The fibronectin domain ED-A is crucial for myofibroblastic phenotype induction by transforming growth factor-beta1.
    J Cell Biol. 1998 Aug 10;142(3):873-81 PMID: 9700173
  10. Smad3 mutant mice develop metastatic colorectal cancer.
    Cell. 1998 Sep 18;94(6):703-14 PMID: 9753318
  11. Mice lacking Smad3 show accelerated wound healing and an impaired local inflammatory response.
    Nat Cell Biol. 1999 Sep;1(5):260-6 PMID: 10559937
  12. TGF-beta and fibrosis.
    Microbes Infect. 1999 Dec;1(15):1349-65 PMID: 10611762
  13. Signal transduction and cellular radiation responses.
    Radiat Res. 2000 Mar;153(3):245-57 PMID: 10669545
  14. Molecular mechanisms of inactivation of TGF-beta receptors during carcinogenesis.
    Cytokine Growth Factor Rev. 2000 Mar-Jun;11(1-2):159-68 PMID: 10708963
  15. Human mast cell migration in response to members of the transforming growth factor-beta family.
    J Leukoc Biol. 2000 Mar;67(3):350-6 PMID: 10733095
  16. TGF-beta1 and radiation fibrosis: a master switch and a specific therapeutic target?
    Int J Radiat Oncol Biol Phys. 2000 May 1;47(2):277-90 PMID: 10802350
  17. Keratinocyte growth regulation in defined organotypic cultures through IL-1-induced keratinocyte growth factor expression in resting fibroblasts.
    J Invest Dermatol. 2000 Jun;114(6):1075-84 PMID: 10844548
  18. Role of transforming growth factor-beta signaling in cancer.
    J Natl Cancer Inst. 2000 Sep 6;92(17):1388-402 PMID: 10974075
  19. Synergistic cooperation between Sp1 and Smad3/Smad4 mediates transforming growth factor beta1 stimulation of alpha 2(I)-collagen (COL1A2) transcription.
    J Biol Chem. 2000 Dec 15;275(50):39237-45 PMID: 11007770
  20. How cells read TGF-beta signals.
    Nat Rev Mol Cell Biol. 2000 Dec;1(3):169-78 PMID: 11252892
  21. Regulation of Smad signaling by protein kinase C.
    FASEB J. 2001 Mar;15(3):553-5 PMID: 11259364
  22. Expression of Smads during in vitro transdifferentiation of hepatic stellate cells to myofibroblasts.
    Biochem Biophys Res Commun. 2001 May 11;283(3):554-62 PMID: 11341760
  23. Identification of novel TGF-beta /Smad gene targets in dermal fibroblasts using a combined cDNA microarray/promoter transactivation approach.
    J Biol Chem. 2001 May 18;276(20):17058-62 PMID: 11279127
  24. Functional characterization of transforming growth factor beta signaling in Smad2- and Smad3-deficient fibroblasts.
    J Biol Chem. 2001 Jun 8;276(23):19945-53 PMID: 11262418
  25. Smad3/AP-1 interactions control transcriptional responses to TGF-beta in a promoter-specific manner.
    Oncogene. 2001 Jun 7;20(26):3332-40 PMID: 11423983
  26. Alteration of transforming growth factor-beta1 response involves down-regulation of Smad3 signaling in myofibroblasts from skin fibrosis.
    Am J Pathol. 2001 Jul;159(1):263-72 PMID: 11438473
  27. Ultraviolet irradiation blocks cellular responses to transforming growth factor-beta by down-regulating its type-II receptor and inducing Smad7.
    J Biol Chem. 2001 Jul 13;276(28):26349-56 PMID: 11320083
  28. Is Smad3 a major player in signal transduction pathways leading to fibrogenesis?
    Chest. 2001 Jul;120(1 Suppl):43S-47S PMID: 11451911
  29. Decrease of mast cells in W/Wv mice and their increase by bone marrow transplantation.
    Blood. 1978 Aug;52(2):447-52 PMID: 352443
  30. Reversible inhibition of normal human prokeratinocyte proliferation by type beta transforming growth factor-growth inhibitor in serum-free medium.
    Cancer Res. 1986 Apr;46(4 Pt 2):2068-71 PMID: 2418960
  31. Stimulation of the chemotactic migration of human fibroblasts by transforming growth factor beta.
    J Exp Med. 1987 Jan 1;165(1):251-6 PMID: 3491869
  32. Transforming growth factor type beta induces monocyte chemotaxis and growth factor production.
    Proc Natl Acad Sci U S A. 1987 Aug;84(16):5788-92 PMID: 2886992
  33. Transforming growth factor-beta 1: histochemical localization with antibodies to different epitopes.
    J Cell Biol. 1989 Feb;108(2):653-60 PMID: 2465297
  34. Cytokine modulation of bacterial cell wall-induced arthritis.
    Agents Actions Suppl. 1991;35:29-34 PMID: 1781421
  35. Mast-cell-derived mediators induce epidermal cell proliferation: clue for lichenified skin lesion formation in atopic dermatitis.
    Int Arch Allergy Immunol. 1992;98(4):410-4 PMID: 1422267
  36. Temporal modulation of TGF-beta 1 and beta-actin gene expression in pig skin and muscular fibrosis after ionizing radiation.
    Radiat Res. 1993 Apr;134(1):63-70 PMID: 8475255
  37. Transforming growth factor-beta 1 induces alpha-smooth muscle actin expression in granulation tissue myofibroblasts and in quiescent and growing cultured fibroblasts.
    J Cell Biol. 1993 Jul;122(1):103-11 PMID: 8314838
  38. In vivo regulation of murine hair growth: insights from grafting defined cell populations onto nude mice.
    J Invest Dermatol. 1993 Jul;101(1 Suppl):124S-129S PMID: 8326145
  39. Transforming growth factor-beta activation in irradiated murine mammary gland.
    J Clin Invest. 1994 Feb;93(2):892-9 PMID: 8113421
  40. Transforming growth factor-beta 1 mediates mast cell chemotaxis.
    J Immunol. 1994 Jun 15;152(12):5860-7 PMID: 7515916
  41. Transforming growth factor beta in tissue fibrosis.
    N Engl J Med. 1994 Nov 10;331(19):1286-92 PMID: 7935686
  42. Isolation and utilization of epidermal keratinocytes for oncogene research.
    Methods Enzymol. 1995;254:3-20 PMID: 8531694
  43. Long-term expression of transforming growth factor TGF beta 1 in mouse skin after localized beta-irradiation.
    Int J Radiat Biol. 1996 Sep;70(3):351-60 PMID: 8800206
  44. Tumor suppressor activity of the TGF-beta pathway in human cancers.
    Cytokine Growth Factor Rev. 1996 Jun;7(1):93-102 PMID: 8864357
  45. Radiation-induced lung injury in vivo: expression of transforming growth factor-beta precedes fibrosis.
    Inflammation. 1996 Aug;20(4):339-52 PMID: 8872498
  46. Radiation-induced changes in transforming growth factor beta and collagen expression in the murine bladder wall and its correlation with bladder function.
    Radiat Res. 1996 Dec;146(6):619-27 PMID: 8955711
  47. Transforming growth factor-beta 1 modulates myofibroblastic phenotype of rat palatal fibroblasts in vitro.
    Exp Cell Res. 1997 Mar 15;231(2):328-36 PMID: 9087174
  48. The MAD-related protein Smad7 associates with the TGFbeta receptor and functions as an antagonist of TGFbeta signaling.
    Cell. 1997 Jun 27;89(7):1165-73 PMID: 9215638
  49. Coactivation of AP-1 activity and TGF-beta1 gene expression in the stress response of normal skin cells to ionizing radiation.
    Oncogene. 1997 Aug 18;15(8):981-9 PMID: 9285693
  50. Transforming growth factor-beta 1 expression in irradiated liver.
    Radiat Res. 1990 Apr;122(1):77-85 PMID: 2181527
  51. Growth arrest induced by transforming growth factor beta 1 is accompanied by protein phosphatase activation in human keratinocytes.
    J Biol Chem. 1991 Feb 25;266(6):3444-8 PMID: 1847373
  52. Transforming growth factor beta 1, a potent chemoattractant for human neutrophils, bypasses classic signal-transduction pathways.
    Proc Natl Acad Sci U S A. 1991 Aug 1;88(15):6805-9 PMID: 1650483
  53. Localization and actions of transforming growth factor-beta s in the embryonic nervous system.
    Development. 1991 Sep;113(1):183-91 PMID: 1764993
  54. Changes in transforming growth factor beta1 gene expression and immunoreactivity levels during development of chronic radiation enteropathy.
    Radiat Res. 1998 Dec;150(6):673-80 PMID: 9840187
  55. SMAD3/4-dependent transcriptional activation of the human type VII collagen gene (COL7A1) promoter by transforming growth factor beta.
    Proc Natl Acad Sci U S A. 1998 Dec 8;95(25):14769-74 PMID: 9843964
  56. Alternatively spliced variant of Smad2 lacking exon 3. Comparison with wild-type Smad2 and Smad3.
    J Biol Chem. 1999 Jan 8;274(2):703-9 PMID: 9873005
  57. Stimulation of type I collagen transcription in human skin fibroblasts by TGF-beta: involvement of Smad 3.
    J Invest Dermatol. 1999 Jan;112(1):49-57 PMID: 9886263
  58. Targeted disruption of SMAD3 results in impaired mucosal immunity and diminished T cell responsiveness to TGF-beta.
    EMBO J. 1999 Mar 1;18(5):1280-91 PMID: 10064594
  59. Targeted disruption of Smad3 reveals an essential role in transforming growth factor beta-mediated signal transduction.
    Mol Cell Biol. 1999 Apr;19(4):2495-504 PMID: 10082515
  60. Keratinocyte growth regulation in fibroblast cocultures via a double paracrine mechanism.
    J Cell Sci. 1999 Jun;112 ( Pt 12):1843-53 PMID: 10341204
  61. A high dose of ionizing radiation induces tissue-specific activation of nuclear factor-kappaB in vivo.
    Radiat Res. 1999 Jun;151(6):703-9 PMID: 10360790
  62. Molecular mechanisms of ionizing radiation-induced apoptosis.
    Immunol Cell Biol. 1999 Jun;77(3):263-71 PMID: 10361259
  63. Identification of Smad7, a TGFbeta-inducible antagonist of TGF-beta signalling.
    Nature. 1997 Oct 9;389(6651):631-5 PMID: 9335507
Article Info
Journal
The American journal of pathology
Abbr.
Am J Pathol
ISSN
0002-9440
Published
2002-03-00
Pages
1057-68
Language
English
Region
United States
NLM ID
0370502
PMCID
PMC1867194
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com