Streptococcus pneumoniae DNA polymerase I lacks 3'-to-5' exonuclease activity: localization of the 5'-to-3' exonucleolytic domain
Open Access
- 1 March 1992
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 174 (6) , 2014-2024
- https://doi.org/10.1128/jb.174.6.2014-2024.1992
Abstract
The Streptococcus pneumoniae polA gene was altered at various positions by deletions and insertions. The polypeptides encoded by these mutant polA genes were identified in S. pneumoniae. Three of them were enzymatically active. One was a fused protein containing the first 11 amino acid residues of gene 10 from coliphage T7 and the carboxyl-terminal two-thirds of pneumococcal DNA polymerase I; it possessed only polymerase activity. The other two enzymatically active proteins, which contained 620 and 351 amino acid residues from the amino terminus, respectively, lacked polymerase activity and showed only exonuclease activity. These two polymerase-deficient proteins and the wild-type protein were hyperproduced in Escherichia coli and purified. In contrast to the DNA polymerase I of Escherichia coli but similar to the corresponding enzyme of Thermus aquaticus, the pneumococcal enzyme appeared to lack 3'-to-5' exonuclease activity. The 5'-to-3' exonuclease domain was located in the amino-terminal region of the wild-type pneumococcal protein. This exonuclease activity excised deoxyribonucleoside 5'-monophosphate from both double- and single-stranded DNAs. It degraded oligonucleotide substrates to a decameric final product.Keywords
This publication has 41 references indexed in Scilit:
- Use of bacteriophage T7 RNA polymerase to direct selective high-level expression of cloned genesPublished by Elsevier ,2004
- The polymerase domain of Streptococcus pneumoniae DNA polymerase IEuropean Journal of Biochemistry, 1991
- Can DNA polymerase I (Klenow fragment) serve as a model for other polymerases?: Current Opinion in Structural Biology 1991, 1:123–129Current Opinion in Structural Biology, 1991
- A conserved 3′→5′ exonuclease active site in prokaryotic and eukaryotic DNA polymerasesCell, 1989
- Fidelity of DNA synthesis by the Thermus aquaticus DNA polymeraseBiochemistry, 1988
- Selective advantage of deletions enhancing chloramphenicol acetyltransferase gene expression in Streptococcus pneumoniae plasmidsGene, 1986
- Genetic mapping and DNA sequence analysis of mutations in the polA gene of Escherichia coliJournal of Molecular Biology, 1985
- Genetic characterization of early amber mutations in the Escherichia coli polA gene and purification of the amber peptidesJournal of Molecular Biology, 1983
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970
- Proteolytic cleavage of DNA polymerase from Escherichia Coli B into an exonuclease unit and a polymerase unitFEBS Letters, 1970