Keratin 8 (K8) and keratin 18 (K18) are the first intermediate filament proteins to be expressed during murine development, and represent the evolutionary ancestors of the more specialized keratins. In humans, K8 and K18 are the predominant intermediate filaments of internal organs and carcinomas of breast, liver, and intestine. Recently we have shown that oncogenes which activate the ras signal transduction pathway stimulate K18 expression through regulatory elements recognized by members of the ets and AP1 transcription factor families. In addition, we have generated mice which carry a null allele for the mouse K8 gene and shown that this gene is vital to the development of the embryo. This proposal focuses on both the regulation and function of these intermediate filaments. The functions of these proteins during both normal development and in tumor cells will be investigated with the use of gene targeting technology to generate mice and cells which lack these proteins. In particular, the possible function of these proteins in the invasive motility of both breast and melanoma tumor cells will be tested. The regulation of the K18 gene will be investigated by identifying both the trans-acting transcription factors necessary for expression and the sequences important for directing the gene to a chromatin state, either permissive for expression or incompatible with expression in different adult transgenic mouse tissues. Furthermore, because Kl8 expression in transgenic mice is found to be independent of its site of integration, efficient and directly proportional to the number of integrated genes, we will identify the sequences which are able to confirm these properties on heterologous genes.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
2R01CA042302-09
Application #
2090662
Study Section
Pathology B Study Section (PTHB)
Project Start
1986-05-01
Project End
1999-02-28
Budget Start
1994-05-20
Budget End
1995-02-28
Support Year
9
Fiscal Year
1994
Total Cost
Indirect Cost
Name
Sanford-Burnham Medical Research Institute
Department
Type
DUNS #
009214214
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Oshima, Robert G (2007) Intermediate filaments: a historical perspective. Exp Cell Res 313:1981-94
Cecena, Grace; Wen, Fang; Cardiff, Robert D et al. (2006) Differential sensitivity of mouse epithelial tissues to the polyomavirus middle T oncogene. Am J Pathol 168:310-20
Jaquemar, Daniel; Kupriyanov, Sergey; Wankell, Miriam et al. (2003) Keratin 8 protection of placental barrier function. J Cell Biol 161:749-56
Oshima, R G (2002) Apoptosis and keratin intermediate filaments. Cell Death Differ 9:486-92
Willoughby, D A; Vilalta, A; Oshima, R G (2000) An Alu element from the K18 gene confers position-independent expression in transgenic mice. J Biol Chem 275:759-68
Caulin, C; Ware, C F; Magin, T M et al. (2000) Keratin-dependent, epithelial resistance to tumor necrosis factor-induced apoptosis. J Cell Biol 149:17-22
Tamai, Y; Ishikawa, T; Bosl, M R et al. (2000) Cytokeratins 8 and 19 in the mouse placental development. J Cell Biol 151:563-72
Rhodes, K; Oshima, R G (1998) A regulatory element of the human keratin 18 gene with AP-1-dependent promoter activity. J Biol Chem 273:26534-42
Suzuki, N; Zara, J; Sato, T et al. (1998) A cytoplasmic protein, bystin, interacts with trophinin, tastin, and cytokeratin and may be involved in trophinin-mediated cell adhesion between trophoblast and endometrial epithelial cells. Proc Natl Acad Sci U S A 95:5027-32
Yamamoto, H; Flannery, M L; Kupriyanov, S et al. (1998) Defective trophoblast function in mice with a targeted mutation of Ets2. Genes Dev 12:1315-26

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