DNA polymerase I and primase are the two major chromosomal DNA replication enzymes in the yeast Saccharomyces cerevisiae. Our immediate goal is to delineate the mechanism of these enzymes in the priming and elongation stages of DNA replication. Thus far, we have purified polymerase-free yeast DNA primase and developed assays for the DNA polymerase holoenzyme of yeast. Partial purification of a high molecular weight ( 500,000Da) DNA pol I holoenzyme has been achieved. We plan to complete the purification of the holoenzyme to homogeneity. We would characterize each of the polypeptides that copurify with holoenzyme through immunological and structural studies. We shall determine various holoenzyme-associated activities, location of these activity sites in the polypeptide assembly, and their function in the overall mechanism of action of the holoenzyme. We will determine the in vitro rate of DNA synthesis, fidelity of DNA synthesis of holoenzyme in vitro and processivity of such synthesis. In order to derive conclusions regarding the structure and function of holoenzyme we would determine the influence of various subunits and cofactors such as single stranded DNA binding protein in its various properties. We plan to study the mechanism of protein-nucleotide and DNA- protein interactions, involved in the mechanism of action of holoenzyme through ultraviolet photocrosslinking. This will likely provide insights in its modes of action and complement our mechanistic studies as outline above. We have initiated isolation of yeast primase gene and we plan to complete primase gene isolation and gain insights into its genetic requirement in vivo.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM036002-02
Application #
3289582
Study Section
Physiological Chemistry Study Section (PC)
Project Start
1987-08-01
Project End
1990-07-31
Budget Start
1988-08-01
Budget End
1989-07-31
Support Year
2
Fiscal Year
1988
Total Cost
Indirect Cost
Name
University of Maryland Baltimore
Department
Type
Schools of Medicine
DUNS #
003255213
City
Baltimore
State
MD
Country
United States
Zip Code
21201
Biswas, Subhasis B; Biswas-Fiss, Esther E (2006) Quantitative analysis of binding of single-stranded DNA by Escherichia coli DnaB helicase and the DnaB x DnaC complex. Biochemistry 45:11505-13
Biswas, Subhasis B; Khopde, Sujata M; Biswas-Fiss, Esther E (2005) Control of ATP-dependent binding of Saccharomyces cerevisiae origin recognition complex to autonomously replicating DNA sequences. Cell Cycle 4:494-500
Mitkova, Atanaska V; Biswas-Fiss, Esther E; Biswas, Subhasis B (2005) Modulation of DNA synthesis in Saccharomyces cerevisiae nuclear extract by DNA polymerases and the origin recognition complex. J Biol Chem 280:6285-92
Flowers, Stephen; Biswas, Esther E; Biswas, Subhasis B (2003) Conformational dynamics of DnaB helicase upon DNA and nucleotide binding: analysis by intrinsic tryptophan fluorescence quenching. Biochemistry 42:1910-21
Biswas, Subhasis B; Khopde, Sujata M; Zhu Fx, Fan xiu et al. (2003) Subunit interactions in the assembly of Saccharomyces cerevisiae DNA polymerase alpha. Nucleic Acids Res 31:2056-65
Biswas, Esther E; Chen, Pei-Hua; Biswas, Subhasis B (2002) Modulation of enzymatic activities of Escherichia coli DnaB helicase by single-stranded DNA-binding proteins. Nucleic Acids Res 30:2809-16
Suarez, Tatiana; Biswas, Subhasis B; Biswas, Esther E (2002) Biochemical defects in retina-specific human ATP binding cassette transporter nucleotide binding domain 1 mutants associated with macular degeneration. J Biol Chem 277:21759-67
Khopde, Sujata; Biswas, Esther E; Biswas, Subhasis B (2002) Affinity and sequence specificity of DNA binding and site selection for primer synthesis by Escherichia coli primase. Biochemistry 41:14820-30
Mitkova, Atanaska V; Biswas, Esther E; Biswas, Subhasis B (2002) Cell cycle specific plasmid DNA replication in the nuclear extract of Saccharomyces cerevisiae: modulation by replication protein A and proliferating cell nuclear antigen. Biochemistry 41:5255-65
Biswas, E E; Nagele, R G; Biswas, S (2001) A novel human hexameric DNA helicase: expression, purification and characterization. Nucleic Acids Res 29:1733-40

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