The long-term objective of the applicant's research program is to elucidate the mechanisms of somatic chromatin biosynthesis, and to understand the propagation of epigenetic information to progeny cells. To this end, the present proposal focuses on studying histone-DNA interactions during chromatin replication and assembly in vitro. Experiments will be performed using cytoplasmic and nuclear exercise from somatic cells and sources of replication and assembly factors. The assembly substrate will be histone-depleted, nascent nuclear DNA< as well as purified DNA plasmids. In the initial phase, the appropriate DNA structure, histone modification state, and reaction conditions for in vitro assembly will be determined, based on the criteria of increased nuclease resistance, generation of a nucleosomal ladder, change in plasmid superhelical density, and electrophoretic migration of DNA protein complexes. Next, the topoisomerase requirements for the assembly of newly replicated DNA in vitro will be examine,d using camptothecin and VM-26 (specific inhibitors of eukaryotic DNA topoisomerases I and II, respectively). Once the parameters of assembly have been established, the influence of core histone acetylation on the deposition of histone H1 will be investigated, and the effects of H1 on assembly in vitro examined. As an integral part of these studies, the acetylation level of nascent nucleosomes containing segregated parental histones will be measured, using i) an antiserum that specifically recognizes the acetylated form of histone H4, and ii) a chemically cleavable biotinylated nucleotide. The [acetylated]H4-antiserum will also be used to identify possible nucleosome """"""""assembly factors"""""""" and histone escort complexes, by immunopredipitating radiolabeled cell extracts. Using the same technique, the ability of histones and DNA to form pre-nucleosomal assembly intermediates in partial reactions will also be tested.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM035837-07
Application #
2178087
Study Section
Molecular Biology Study Section (MBY)
Project Start
1986-01-01
Project End
1995-05-31
Budget Start
1993-07-01
Budget End
1995-05-31
Support Year
7
Fiscal Year
1993
Total Cost
Indirect Cost
Name
Boston College
Department
Biology
Type
Schools of Arts and Sciences
DUNS #
045896339
City
Chestnut Hill
State
MA
Country
United States
Zip Code
02467
Tong, Kevin; Keller, Thomas; Hoffman, Charles S et al. (2012) Schizosaccharomyces pombe Hat1 (Kat1) is associated with Mis16 and is required for telomeric silencing. Eukaryot Cell 11:1095-103
Benson, Laura J; Phillips, Jane A; Gu, Yongli et al. (2007) Properties of the type B histone acetyltransferase Hat1: H4 tail interaction, site preference, and involvement in DNA repair. J Biol Chem 282:836-42
Benson, Laura J; Gu, Yongli; Yakovleva, Tatyana et al. (2006) Modifications of H3 and H4 during chromatin replication, nucleosome assembly, and histone exchange. J Biol Chem 281:9287-96
Benson, Laura J; Annunziato, Anthony T (2004) In vitro analysis of histone acetyltransferase activity. Methods 33:45-52
Makowski, A M; Dutnall, R N; Annunziato, A T (2001) Effects of acetylation of histone H4 at lysines 8 and 16 on activity of the Hat1 histone acetyltransferase. J Biol Chem 276:43499-502
Annunziato, A T; Hansen, J C (2000) Role of histone acetylation in the assembly and modulation of chromatin structures. Gene Expr 9:37-61
Chang, L; Ryan, C A; Schneider, C A et al. (1999) Preparation/analysis of chromatin replicated in vivo and in isolated nuclei. Methods Enzymol 304:76-99
Chang, L; Loranger, S S; Mizzen, C et al. (1997) Histones in transit: cytosolic histone complexes and diacetylation of H4 during nucleosome assembly in human cells. Biochemistry 36:469-80
Annunziato, A T; Eason, M B; Perry, C A (1995) Relationship between methylation and acetylation of arginine-rich histones in cycling and arrested HeLa cells. Biochemistry 34:2916-24
Sobel, R E; Cook, R G; Perry, C A et al. (1995) Conservation of deposition-related acetylation sites in newly synthesized histones H3 and H4. Proc Natl Acad Sci U S A 92:1237-41

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