The long-term goal of this research is to understand the mechanisms involved in gene regulation. Proper control of gene expression is essential during the life span of an organism; misregulation of expression can lead to developmental abnormalities and disease. Heterochromatin protein one, HP1, is an evolutionary conserved chromatin protein that is a component of silent chromatin. This proposal will focus on the molecular mechanisms of HP1 -mediated silencing at euchromatic locations. Recent data suggest that HP1 is essential for silencing genes within euchromatic regions of chromosomes. In mice, HP1 has been shown to interact with transcriptional corepressors that associate with the promoter regions of many genes. In humans, a reduction in HP1 correlates with metastasis of breast cancer cells, possibly due to the loss of silencing of genes required for the metastatic phenotype. Drosophila offers the cytology and genetics not available in mammalian systems to determine the role of HP1 in the regulation of euchromatic genes. Experiments proposed will test the following hypotheses: 1) HP1 nucleates the formation of heterochromatic domains that spread along the chromosome, silencing neighboring genes. To dissect the mechanisms of heterochromatin formation and spreading, HP1 will be tethered to 256 tandem sites within euchromatin. Genetic, cytological, and biochemical experiments will he used to determine the properties of the silent chromatin formed, the extent of spreading, and the identity of additional factors recruited to the region. Results will be compared with those known for centric heterochromatin. 2) HP1 acts as a short-range transcriptional silencer. HP1 will be tethered to 8 tandem sites strategically located within promoter regions of well-characterized genes. The balance between transcriptional activation and silencing will be explored by expression and chromatin structural analyses. The results will determine whether mechanisms of short-range silencing are similar to those responsible for heterochromatin mediated silencing. 3) HP1 is essential for silencing euchromatic genes. Euchromatic genes regulated by HP1 have not been identified in any organism to date. A combination of cytology, chromatin immunoprecipitation experiments, and genetics will be used to identify euchromatic genes regulated by HP1. An analysis of these genes will allow for comparisons with genes artificially silenced by HP1, and genes silenced by HP1 in heterochromatin.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM061513-05
Application #
6904659
Study Section
Cell Development and Function Integrated Review Group (CDF)
Program Officer
Carter, Anthony D
Project Start
2001-07-01
Project End
2006-06-30
Budget Start
2005-07-01
Budget End
2006-06-30
Support Year
5
Fiscal Year
2005
Total Cost
$249,124
Indirect Cost
Name
University of Iowa
Department
Biochemistry
Type
Schools of Medicine
DUNS #
062761671
City
Iowa City
State
IA
Country
United States
Zip Code
52242
Azzaz, Abdelhamid M; Vitalini, Michael W; Thomas, Andrew S et al. (2014) Human heterochromatin protein 1? promotes nucleosome associations that drive chromatin condensation. J Biol Chem 289:6850-61
Geyer, Pamela K; Vitalini, Michael W; Wallrath, Lori L (2011) Nuclear organization: taking a position on gene expression. Curr Opin Cell Biol 23:354-9
Dialynas, George; Speese, Sean; Budnik, Vivian et al. (2010) The role of Drosophila Lamin C in muscle function and gene expression. Development 137:3067-77
Hines, Karrie A; Cryderman, Diane E; Flannery, Kaitlin M et al. (2009) Domains of heterochromatin protein 1 required for Drosophila melanogaster heterochromatin spreading. Genetics 182:967-77
Wallrath, Lori L; Elgin, Sarah C R (2008) Stimulating conversations between HP1a and histone demethylase dKDM4A. Mol Cell 32:601-2
Wallrath, Lori L; Nagy, Peter L; Geyer, Pamela K (2008) Editorial. Epigenetics of development and human disease. Mutat Res 647:1-2
Yang, Hongbo; Pesavento, James J; Starnes, Taylor W et al. (2008) Preferential dimethylation of histone H4 lysine 20 by Suv4-20. J Biol Chem 283:12085-92
Dialynas, George K; Vitalini, Michael W; Wallrath, Lori L (2008) Linking Heterochromatin Protein 1 (HP1) to cancer progression. Mutat Res 647:13-20
Geyer, Pamela K; Wallrath, Lori L (2007) Heterochromatin: not just for silencing anymore: report of the Eighth International Conference on Drosophila Heterochromatin. Fly (Austin) 1:251-6
Moss, Timothy J; Wallrath, Lori L (2007) Connections between epigenetic gene silencing and human disease. Mutat Res 618:163-74

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