The long-term objective of this proposal are to study the organization, evolution and function of the histone multigene family, paying special attention to evolutionarily conserved histone variants. Antibodies to the macronuclear-specific Tetrahymena thermophila H2A variant hv1 and to mouse H2A.X will be used to confirm the identity of a conserved epitope that is localized to nuclear chromatin in mammalian cells and is associated with developmentally active loci in Drosophila and to test the hypothesis that shuffling of conserved epitopes occurs during evolution of histone H2A. Immunoprecipitation of formaldehyde crosslinked macronuclear chromatin with antibodies to hv1, to the macronuclear- specific basal H3 variant hv2 and to RNA polymerase II will be used to test the hypotheses that hv1 is associated with transcriptionally active or competent genes and that hv2 replaces the major H3 molecules that turn over during transcription. The crosslinking-immunoprecipitation method will also be used to study the proteins associated with these histone variants. Chromatin reconstitution will be used to determine whether variant containing core particles have an altered structure. The function of a small conserved sequence found in the carboxy termini of yeast H2As an of some H2A variants will be studied by mutating the element and studying its function in yeast. A Drosophila H2A variant whose existence is predicted from our studies of Tetrahymena and Drosophila H2A variants will be cloned and analyzed. These studies should shed light on the function of histone variants in regulation of gene expression in eukaryotes. This function must be understood in normal cells before a complete understanding of aberrant gene activity during abnormal development and neoplastic transformation can be achieved.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM021793-17
Application #
2173797
Study Section
Genetics Study Section (GEN)
Project Start
1975-02-01
Project End
1996-12-31
Budget Start
1994-01-01
Budget End
1994-12-31
Support Year
17
Fiscal Year
1994
Total Cost
Indirect Cost
Name
University of Rochester
Department
Biology
Type
Schools of Arts and Sciences
DUNS #
208469486
City
Rochester
State
NY
Country
United States
Zip Code
14627
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Xiong, Jie; Lu, XingYi; Lu, YuMing et al. (2011) Tetrahymena Gene Expression Database (TGED): a resource of microarray data and co-expression analyses for Tetrahymena. Sci China Life Sci 54:65-7
Noto, Tomoko; Kurth, Henriette M; Kataoka, Kensuke et al. (2010) The Tetrahymena argonaute-binding protein Giw1p directs a mature argonaute-siRNA complex to the nucleus. Cell 140:692-703
Xiong, Jie; Feng, Lifang; Yuan, Dongxia et al. (2010) Genome-wide identification and evolution of ATP-binding cassette transporters in the ciliate Tetrahymena thermophila: A case of functional divergence in a multigene family. BMC Evol Biol 10:330
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Wang, Zhe; Cui, Bowen; Gorovsky, Martin A (2009) Histone H2B ubiquitylation is not required for histone H3 methylation at lysine 4 in tetrahymena. J Biol Chem 284:34870-9
Fu, Chengjie; Xiong, Jie; Miao, Wei (2009) Genome-wide identification and characterization of cytochrome P450 monooxygenase genes in the ciliate Tetrahymena thermophila. BMC Genomics 10:208
Aronica, Lucia; Bednenko, Janna; Noto, Tomoko et al. (2008) Study of an RNA helicase implicates small RNA-noncoding RNA interactions in programmed DNA elimination in Tetrahymena. Genes Dev 22:2228-41
Song, Xiaoyuan; Gorovsky, Martin A (2007) Unphosphorylated H1 is enriched in a specific region of the promoter when CDC2 is down-regulated during starvation. Mol Cell Biol 27:1925-33

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