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Human DNA polymerase ? has reverse transcriptase activity in cellular environments.


ABSTRACT: Classical DNA and RNA polymerase (pol) enzymes have defined roles with their respective substrates, but several pols have been found to have multiple functions. We reported previously that purified human DNA pol ? (hpol ?) can incorporate both deoxyribonucleoside triphosphates (dNTPs) and ribonucleoside triphosphates (rNTPs) and can use both DNA and RNA as substrates. X-ray crystal structures revealed that two pol ? residues, Phe-18 and Tyr-92, behave as steric gates to influence sugar selectivity. However, the physiological relevance of these phenomena has not been established. Here, we show that purified hpol ? adds rNTPs to DNA primers at physiological rNTP concentrations and in the presence of competing dNTPs. When two rATPs were inserted opposite a cyclobutane pyrimidine dimer, the substrate was less efficiently cleaved by human RNase H2. Human XP-V fibroblast extracts, devoid of hpol ?, could not add rNTPs to a DNA primer, but the expression of transfected hpol ? in the cells restored this ability. XP-V cell extracts did not add dNTPs to DNA primers hybridized to RNA, but could when hpol ? was expressed in the cells. HEK293T cell extracts could add dNTPs to DNA primers hybridized to RNA, but lost this ability if hpol ? was deleted. Interestingly, a similar phenomenon was not observed when other translesion synthesis (TLS) DNA polymerases-hpol ?, ?, or ?-were individually deleted. These results suggest that hpol ? is one of the major reverse transcriptases involved in physiological processes in human cells.

SUBMITTER: Su Y 

PROVIDER: S-EPMC6463694 | biostudies-literature | 2019 Apr

REPOSITORIES: biostudies-literature

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Human DNA polymerase η has reverse transcriptase activity in cellular environments.

Su Yan Y   Ghodke Pratibha P PP   Egli Martin M   Li Lin L   Wang Yinsheng Y   Guengerich F Peter FP  

The Journal of biological chemistry 20190306 15


Classical DNA and RNA polymerase (pol) enzymes have defined roles with their respective substrates, but several pols have been found to have multiple functions. We reported previously that purified human DNA pol η (hpol η) can incorporate both deoxyribonucleoside triphosphates (dNTPs) and ribonucleoside triphosphates (rNTPs) and can use both DNA and RNA as substrates. X-ray crystal structures revealed that two pol η residues, Phe-18 and Tyr-92, behave as steric gates to influence sugar selectivi  ...[more]

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