Abstract
DNA polymerase activities in fractionated cell extract of Aeropyrum pernix, a hyperthermophilic crenarchaeote, were investigated. Aphidicolin-sensitive (fraction I) and aphidicolin-resistant (fraction II) activities were detected. The activity in fraction I was more heat stable than that in fraction II. Two different genes (polA and polB) encoding family B DNA polymerases were cloned from the organism by PCR using degenerated primers based on the two conserved motifs (motif A and B). The deduced amino acid sequences from their entire coding regions contained all of the motifs identified in family B DNA polymerases for 3'-->5' exonuclease and polymerase activities. The product of polA gene (Pol I) was aphidicolin resistant and heat stable up to 80 degrees C. In contrast, the product of polB gene (Pol II) was aphidicolin sensitive and stable at 95 degrees C. These properties of Pol I and Pol II are similar to those of fractions II and I, respectively, and moreover, those of Pol I and Pol II of Pyrodictium occultum. The deduced amino acid sequence of A. pernix Pol I exhibited the highest identities to archaeal family B DNA polymerase homologs found only in the crenarchaeotes (group I), while Pol II exhibited identities to homologs found in both euryarchaeotes and crenarchaeotes (group II). These results provide further evidence that the subdomain Crenarchaeota has two family B DNA polymerases. Furthermore, at least two DNA polymerases work in the crenarchaeal cells, as found in euryarchaeotes, which contain one family B DNA polymerase and one heterodimeric DNA polymerase of a novel family.
MeSH Terms
Amino Acid Sequence
Bacteria, Aerobic
Base Sequence
Cloning, Molecular
Crenarchaeota/enzymology
DNA Polymerase I/genetics,isolation & purification,metabolism
DNA Polymerase II/genetics,isolation & purification,metabolism
DNA Replication
DNA, Bacterial/biosynthesis
Genes, Bacterial
Hot Temperature
Molecular Sequence Data
Recombinant Proteins/metabolism
Chemicals
DNA, Bacterial
Recombinant Proteins
DNA Polymerase I
DNA Polymerase II
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Cann I K
Department of Molecular Biology, Biomolecular Engineering Research Institute, Suita, Osaka 565-0874, Japan.
Ishino S
Nomura N
Sako Y
Ishino Y
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