The objective is to use rat hepatocytes to study regulation of differentiation in hepatocytes in vitro and to determine how the processes associated with transformation and malignancy alter the expression of differentiated functions in hepatocytes in vitro. These goals will be achieved using two in vitro hepatocyte systems recently developed and characterized in our laboratory (1) a long-term culture system for primary hepatocytes in which the cells are maintained in a chemically defined medium supplemented with dimethylsulfoxide (DMSO) and (2) a series of simian virus 40 (SV40) immortalized, transformed, and tumor cell lines derived from hepatocytes. We propose to (1) determine what transcriptional mechanisms are used by the cells in the two in vitro hepatocyte systems to achieve steady state levels of albumin mRNA comparable to those in liver; (2) measure mRNA levels and transcription of albumin and other liver-specific genes, common genes, oncogenes, and genes associated with hepatocarcinogenesis after exposure of DMSO-treated primary hepatocytes and hepatocyte cell lines to specific hormones and agents and in hepatocyte cell lines as they progress in their tumorigenic potential; (3) use SV40-immortalized hepatocyte cell lines to map regulatory elements for the albumin gene and (4) use the techniques of DNase I hypersensitivity and DNase I footprinting to identify protein binding sites on the regulatory regions of liver-specific genes and study the factors which interact with these sites. We will also continue to define what viral and cellular DNA sequences can convert a normal hepatocyte into an immortalized hepatocyte cell line, delineate what sequences will convert an immortalized hepatocyte cell line into a tumorigenic cell line and compare the effect of introducing these DNA sequences on the expression of differentiated functions.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
2R01CA023931-11
Application #
3166265
Study Section
Experimental Virology Study Section (EVR)
Project Start
1978-09-01
Project End
1993-07-31
Budget Start
1988-09-01
Budget End
1989-07-31
Support Year
11
Fiscal Year
1988
Total Cost
Indirect Cost
Name
Pennsylvania State University
Department
Type
Schools of Medicine
DUNS #
129348186
City
Hershey
State
PA
Country
United States
Zip Code
17033
Starkey, Jason L; Chiari, Estelle F; Isom, Harriet C (2009) Hepatitis B virus (HBV)-specific short hairpin RNA is capable of reducing the formation of HBV covalently closed circular (CCC) DNA but has no effect on established CCC DNA in vitro. J Gen Virol 90:115-26
Heipertz Jr, Richard A; Starkey, Jason L; Miller, Thomas G et al. (2009) trans-Complementation of HBV rtM204I mutant replication by HBV wild-type polymerase. Virology 388:57-67
Shan, Weiwei; Palkar, Prajakta S; Murray, Iain A et al. (2008) Ligand activation of peroxisome proliferator-activated receptor beta/delta (PPARbeta/delta) attenuates carbon tetrachloride hepatotoxicity by downregulating proinflammatory gene expression. Toxicol Sci 105:418-28
Heipertz Jr, Richard A; Miller, Thomas G; Kelley, Colleen M et al. (2007) In vitro study of the effects of precore and lamivudine-resistant mutations on hepatitis B virus replication. J Virol 81:3068-76
Bilello, John P; Cable, Edward E; Isom, Harriet C (2003) Expression of E-cadherin and other paracellular junction genes is decreased in iron-loaded hepatocytes. Am J Pathol 162:1323-38
Bilello, J P; Cable, E E; Myers, R L et al. (2003) Role of paracellular junction complexes in baculovirus-mediated gene transfer to nondividing rat hepatocytes. Gene Ther 10:733-49
Abdelhamed, Ayman M; Kelley, Colleen M; Miller, Thomas G et al. (2003) Comparison of anti-hepatitis B virus activities of lamivudine and clevudine by a quantitative assay. Antimicrob Agents Chemother 47:324-36
Iocca, Heather A; Isom, Harriet C (2003) Tumor necrosis factor-alpha acts as a complete mitogen for primary rat hepatocytes. Am J Pathol 163:465-76
Stoehr, Stephanie A; Isom, Harriet C (2003) Gap junction-mediated intercellular communication in a long-term primary mouse hepatocyte culture system. Hepatology 38:1125-35
Malecki, Elise A; Cable, Edward E; Isom, Harriet C et al. (2002) The lipophilic iron compound TMH-ferrocene [(3,5,5-trimethylhexanoyl)ferrocene] increases iron concentrations, neuronal L-ferritin, and heme oxygenase in brains of BALB/c mice. Biol Trace Elem Res 86:73-84

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