alpha-l-antichymotrypsin (ACT) is a serine proteinase inhibitor (serpin) that specifically co-localizes with beta-amyloid deposits in the brains of Alzheimer's patients. ACT also enhances the formation of beta-amyloid deposits in a double transgenic mouse model of Alzheimer's disease. Astrocytes are the major source of ACT found in the brain and expression of this serpin is enhanced during brain inflammatory processes. The goals of this research proposal have been designed to elucidate mechanisms of tissue-specific expression of ACT in human brain astrocytes and its up-regulation by IL-1 and tumor necrosis factor (TNF) in these cells. The gene encoding ACT is located in a distal serpin subcluster on chromosome 14q32.1. All genes located in this subcluster are expressed in hepatocytes but only the ACT gene is transcribed in astrocytes. In addition, hepatocyte-specific transcription factors are not expressed in astrocytes. Based on our preliminary studies we hypothesized that """"""""astrocyte specific"""""""" chromatin structure of this distal subcluster determines the expression pattern of serpin genes in the brain. However, tissue-specific transcription factors that determine this """"""""astrocyte specific"""""""" structure are not known and their identification is critical for a full understanding of the tissue-specific expression of the ACT gene. Therefore, we propose the following specific aims: 1) To compare the chromatin structure of the distal serpin subcluster in astrocytes to that in hepatocytes and tissue-specific microcell hybrids. 2) To identify the specific regulatory elements and transcription factors that are responsible for astrocyte-specific expression of the ACT gene. 3) To identify the mechanism of tissue-specific activation of the ACT gene by IL-1 and TNF.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
7R01NS044118-02
Application #
6923401
Study Section
Molecular, Cellular and Developmental Neurosciences 2 (MDCN)
Program Officer
Murphy, Diane
Project Start
2004-01-01
Project End
2007-12-31
Budget Start
2004-09-01
Budget End
2004-12-31
Support Year
2
Fiscal Year
2004
Total Cost
$163,693
Indirect Cost
Name
Virginia Commonwealth University
Department
Biochemistry
Type
Schools of Medicine
DUNS #
105300446
City
Richmond
State
VA
Country
United States
Zip Code
23298
Singh, Sandeep K; Bhardwaj, Reetika; Wilczynska, Katarzyna M et al. (2011) A complex of nuclear factor I-X3 and STAT3 regulates astrocyte and glioma migration through the secreted glycoprotein YKL-40. J Biol Chem 286:39893-903
Singh, Sandeep K; Wilczynska, Katarzyna M; Grzybowski, Adrian et al. (2011) The unique transcriptional activation domain of nuclear factor-I-X3 is critical to specifically induce marker gene expression in astrocytes. J Biol Chem 286:7315-26
Wilczynska, Katarzyna M; Singh, Sandeep K; Adams, Bret et al. (2009) Nuclear factor I isoforms regulate gene expression during the differentiation of human neural progenitors to astrocytes. Stem Cells 27:1173-81
Bryan, Lauren; Paugh, Barbara S; Kapitonov, Dmitri et al. (2008) Sphingosine-1-phosphate and interleukin-1 independently regulate plasminogen activator inhibitor-1 and urokinase-type plasminogen activator receptor expression in glioblastoma cells: implications for invasiveness. Mol Cancer Res 6:1469-77
Paugh, Barbara S; Paugh, Steven W; Bryan, Lauren et al. (2008) EGF regulates plasminogen activator inhibitor-1 (PAI-1) by a pathway involving c-Src, PKCdelta, and sphingosine kinase 1 in glioblastoma cells. FASEB J 22:455-65
Bryan, Lauren; Kordula, Tomasz; Spiegel, Sarah et al. (2008) Regulation and functions of sphingosine kinases in the brain. Biochim Biophys Acta 1781:459-66
Wilczynska, Katarzyna M; Gopalan, Sunita M; Bugno, Marcin et al. (2006) A novel mechanism of tissue inhibitor of metalloproteinases-1 activation by interleukin-1 in primary human astrocytes. J Biol Chem 281:34955-64
Gopalan, Sunita M; Wilczynska, Katarzyna M; Konik, Barbara S et al. (2006) Nuclear factor-1-X regulates astrocyte-specific expression of the alpha1-antichymotrypsin and glial fibrillary acidic protein genes. J Biol Chem 281:13126-33
Kiss, Daniel L; Xu, Weili; Gopalan, Sunita et al. (2005) Duration of alpha 1-antichymotrypsin gene activation by interleukin-1 is determined by efficiency of inhibitor of nuclear factor kappa B alpha resynthesis in primary human astrocytes. J Neurochem 92:730-8
Gopalan, Sunita; Kasza, Aneta; Xu, Weili et al. (2005) Astrocyte- and hepatocyte-specific expression of genes from the distal serpin subcluster at 14q32.1 associates with tissue-specific chromatin structures. J Neurochem 94:763-73