This renewal application proposes extensive studies on the regulation of collagen gene expression, the ultimate goal being delineation of the molecular mechanisms leading to accumulation of collagen in dermal fibrotic diseases. Two hypotheses developed on the basis of past progress in this project will be tested. The first postulates that the critical event leading to fibrotic skin disease is altered growth factor modulation of collagen gene expression at the transcriptional level, with particular emphasis on the antagonistic effects of TGF-beta and TNF-alpha on type I collagen. The second hypothesis suggests that the expression of type VI and possibly type VII collagen genes serves as an early marker of the onset of the fibrotic reaction. To test these hypotheses, the applicant proposes two complementary areas of research: 1) Detailed elucidation of regulatory mechanisms of collagen gene expression in human skin fibroblasts. In these aims the applicant proposes identification of cis-elements responsible for constitutive expression of type I, VI and VII collagen genes, identification of trans-acting factors by gel mobility shift and footprinting analyses, and isolation of such factors by magnetic separation of DNA/protein complexes as well as cloning using the yeast one-hybrid system. Furthermore, growth factor-responsive elements will be identified in the corresponding genes, with particular emphasis on the role of AP1/NF-kB in the regulation of type I collagen gene expression. 2) Development of novel treatment modalities for fibrotic skin diseases. Such approaches include evaluation of novel cytokines that are potentially useful for inhibition of collagen accumulation. The applicant also proposes development of novel molecular approaches towards future gene therapy applications, including utilization of antisense oligonucleotides, triple helix forming oligomers, and expression of mammalian vectors containing antisense mRNA sequences. Collectively, it is expected that these experimental approaches will allow the applicant to define the pathways that are operative in the physiological regulation of collagen gene expression, and to identify the mechanisms of collagen accumulation in fibrotic skin diseases. Such information will permit development of novel approaches to counteract these debilitating diseases by targeting the precise molecular levels of aberration.

Agency
National Institute of Health (NIH)
Institute
National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS)
Type
Research Project (R01)
Project #
5R01AR041439-22
Application #
6171271
Study Section
Special Emphasis Panel (ZRG4-OBM-1 (01))
Program Officer
Moshell, Alan N
Project Start
1991-08-01
Project End
2002-03-31
Budget Start
2000-08-01
Budget End
2002-03-31
Support Year
22
Fiscal Year
2000
Total Cost
$497,203
Indirect Cost
Name
Thomas Jefferson University
Department
Dermatology
Type
Schools of Medicine
DUNS #
061197161
City
Philadelphia
State
PA
Country
United States
Zip Code
19107
Chung, Hye Jin; Steplewski, Andrzej; Chung, Kee Yang et al. (2008) Collagen fibril formation. A new target to limit fibrosis. J Biol Chem 283:25879-86
Fujimoto, Norihiro; Terlizzi, Joseph; Aho, Sirpa et al. (2006) Extracellular matrix protein 1 inhibits the activity of matrix metalloproteinase 9 through high-affinity protein/protein interactions. Exp Dermatol 15:300-7
Verrecchia, F; Vindevoghel, L; Lechleider, R J et al. (2001) Smad3/AP-1 interactions control transcriptional responses to TGF-beta in a promoter-specific manner. Oncogene 20:3332-40
Kouba, D J; Nakano, H; Nishiyama, T et al. (2001) Tumor necrosis factor-alpha induces distinctive NF-kappa B signaling within human dermal fibroblasts. J Biol Chem 276:6214-24
Gras, M P; Verrecchia, F; Uitto, J et al. (2001) Downregulation of human type VII collagen (COL7A1) promoter activity by dexamethasone. Identification of a glucocorticoid receptor binding region. Exp Dermatol 10:28-34
Nakano, H; Gasparro, F P; Uitto, J (2001) UVA-340 as energy source, mimicking natural sunlight, activates the transcription factor AP-1 in cultured fibroblasts: evidence for involvement of protein kinase-C. Photochem Photobiol 74:274-82
Uitto, J; Kouba, D (2000) Cytokine modulation of extracellular matrix gene expression: relevance to fibrotic skin diseases. J Dermatol Sci 24 Suppl 1:S60-9
Kivirikko, S; Mauviel, A; Pihlajaniemi, T et al. (1999) Cytokine modulation of type XV collagen gene expression in human dermal fibroblast cultures. Exp Dermatol 8:407-12
Kon, A; Vindevoghel, L; Kouba, D J et al. (1999) Cooperation between SMAD and NF-kappaB in growth factor regulated type VII collagen gene expression. Oncogene 18:1837-44
Kouba, D J; Chung, K Y; Nishiyama, T et al. (1999) Nuclear factor-kappa B mediates TNF-alpha inhibitory effect on alpha 2(I) collagen (COL1A2) gene transcription in human dermal fibroblasts. J Immunol 162:4226-34

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