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Replication Studies of Alkyl Phosphotriester Lesions in Human Cells.


ABSTRACT: Alkyl phosphotriester (alkyl-PTE) lesions in DNA are shown to be poorly repaired; however, little is known about how these lesions impact DNA replication in human cells. Here, we investigated how the SP and RP diastereomers of four alkyl-PTE lesions (alkyl = Me, Et, nPr, or nBu) at the TT site perturb DNA replication in HEK293T cells. We found that these lesions moderately impede DNA replication and that their replicative bypass is accurate. Moreover, CRISPR-Cas9-mediated depletion of Pol η or Pol ζ resulted in significantly attenuated bypass efficiencies for both diastereomers of nPr- and nBu-PTE adducts, and the SP diastereomer of Et-PTE. Diminished bypass efficiencies were also detected for the Rp diastereomer of nPr- and nBu-PTE lesions upon ablation of Pol κ. Together, our study uncovered the impact of the alkyl-PTE lesions on DNA replication in human cells and revealed the roles of individual translesion synthesis DNA polymerases in bypassing these lesions.

SUBMITTER: Wu J 

PROVIDER: S-EPMC10947855 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Replication Studies of Alkyl Phosphotriester Lesions in Human Cells.

Wu Jun J   Wu Jiabin J   Clabaugh Garrit G   Wang Yinsheng Y  

Chemical research in toxicology 20240228 3


Alkyl phosphotriester (alkyl-PTE) lesions in DNA are shown to be poorly repaired; however, little is known about how these lesions impact DNA replication in human cells. Here, we investigated how the <i>S</i><sub>P</sub> and <i>R</i><sub>P</sub> diastereomers of four alkyl-PTE lesions (alkyl = Me, Et, <i>n</i>Pr, or <i>n</i>Bu) at the TT site perturb DNA replication in HEK293T cells. We found that these lesions moderately impede DNA replication and that their replicative bypass is accurate. More  ...[more]

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