RNA Template-dependent 5â² Nuclease Activity ofThermus aquaticus and Thermus thermophilus DNA Polymerases
DNA replication and repair require a specific mechanism to join the 3â²- and 5â²-ends of two strands to maintain DNA continuity. In order to understand the details of this process, we studied the activity of the 5â² nucleases with substrates containing an RNA template strand. By comparing the eub...
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Veröffentlicht in: | The Journal of biological chemistry 2000-08, Vol.275 (32), p.24693 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | DNA replication and repair require a specific mechanism to join the 3â²- and 5â²-ends of two strands to maintain DNA continuity.
In order to understand the details of this process, we studied the activity of the 5â² nucleases with substrates containing
an RNA template strand. By comparing the eubacterial and archaeal 5â² nucleases, we show that the polymerase domain of the
eubacterial enzymes is critical for the activity of the 5â² nuclease domain on RNA containing substrates. Analysis of the activity
of chimeric enzymes between the DNA polymerases from Thermus aquaticus (TaqPol) and Thermus thermophilus (TthPol) reveals two regions, in the âthumbâ and in the âpalmâ subdomains, critical for RNA-dependent 5â² nuclease activity.
There are two critical amino acids in those regions that are responsible for the high activity of TthPol on RNA containing
substrates. Mutating glycine 418 and glutamic acid 507 of TaqPol to lysine and glutamine, respectively, increases its RNA-dependent
5â² nuclease activity 4â10-fold. Furthermore, the RNA-dependent DNA polymerase activity is controlled by a completely different
region of TaqPol and TthPol, and mutations in this region do not affect the 5â² nuclease activity. The results presented here
suggest a novel substrate binding mode of the eubacterial DNA polymerase enzymes, called a 5â² nuclease mode, that is distinct
from the polymerizing and editing modes described previously. The application of the enzymes with improved RNA-dependent 5â²
nuclease activity for RNA detection using the invasive signal amplification assay is discussed. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M002268200 |