Understanding The Loss-Of-Function In A Triple Missense Mutant Of Dna Polymerase Beta Found In Prostate Cancer

INTERNATIONAL JOURNAL OF ONCOLOGY(2013)

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Abstract
Human DNA polymerase (pol) beta is essential for base excision repair. We previously reported a triple somatic mutant of pol beta (p.P261L/T292A/I298T) found in an early onset prostate tumor. This mutation abolishes polymerase activity, and the wild-type allele was not present in the tumor, indicating a complete deficiency in pol beta function. The effect on polymerase activity is unexpected because the point mutations that comprise the triple mutant are not part of the active site. Herein, we demonstrate the mechanism of this loss-of-function. In order to understand the effect of the individual point mutations we biochemically analyzed all single and double mutants that comprise the triple mutant. We found that the p.I298T mutation is responsible for a marked instability of the triple mutant protein at 37 degrees C. At room temperature the triple mutant's low efficiency is also due to a decrease in the apparent binding affinity for the dNTP substrate, which is due to the p.T292A mutation. Furthermore, the triple mutant displays lower fidelity for transversions in vitro, due to the p.T292A mutation. We conclude that distinct mutations of the triple pol beta mutant are responsible for the loss of activity, lower fidelity, and instability observed in vitro.
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Key words
DNA repair, polymerase, enzyme activity, expression analysis
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