volume 17 issue 9 pages 2583-2594

Cysteine Oxidation to Sulfenic Acid in APE1 Aids G-Quadruplex Binding While Compromising DNA Repair

Publication typeJournal Article
Publication date2022-08-29
scimago Q1
wos Q2
SJR1.383
CiteScore7.1
Impact factor3.8
ISSN15548929, 15548937
Biochemistry
General Medicine
Molecular Medicine
Abstract
Apurinic/apyrimidinic endonuclease-1 (APE1) is a base excision repair (BER) enzyme that is also engaged in transcriptional regulation. Previous work demonstrated that the enzymatic stalling of APE1 on a promoter G-quadruplex (G4) recruits transcription factors during oxidative stress for gene regulation. Also, during oxidative stress, cysteine (Cys) oxidation is a post-translational modification (PTM) that can change a protein's function. The current study provides a quantitative survey of cysteine oxidation to sulfenic acid in APE1 and how this PTM at specific cysteine residues affects the function of APE1 toward the NEIL3 gene promoter G4 bearing an abasic site. Of the seven cysteine residues in APE1, five (C65, C93, C208, C296, and C310) were prone to carbonate radical anion oxidation to yield sulfenic acids that were identified and quantified by mass spectrometry. Accordingly, five Cys-to-serine (Ser) mutants of APE1 were prepared and found to have attenuated levels of endonuclease activity, depending on the position, while KD values generally decreased for G4 binding, indicating greater affinity. These data support the concept that cysteine oxidation to sulfenic acid can result in modified APE1 that enhances G4 binding at the expense of endonuclease activity during oxidative stress. Cysteine oxidation to sulfenic acid residues should be considered as one of the factors that may trigger a switch from base excision repair activity to transcriptional modulation by APE1.
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Howpay Manage S. A. et al. Cysteine Oxidation to Sulfenic Acid in APE1 Aids G-Quadruplex Binding While Compromising DNA Repair // ACS Chemical Biology. 2022. Vol. 17. No. 9. pp. 2583-2594.
GOST all authors (up to 50) Copy
Howpay Manage S. A., Fleming A. M., Chen H. N., Burrows C. Cysteine Oxidation to Sulfenic Acid in APE1 Aids G-Quadruplex Binding While Compromising DNA Repair // ACS Chemical Biology. 2022. Vol. 17. No. 9. pp. 2583-2594.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1021/acschembio.2c00511
UR - https://doi.org/10.1021/acschembio.2c00511
TI - Cysteine Oxidation to Sulfenic Acid in APE1 Aids G-Quadruplex Binding While Compromising DNA Repair
T2 - ACS Chemical Biology
AU - Howpay Manage, Shereen A
AU - Fleming, Aaron M
AU - Chen, Hsiao Nung
AU - Burrows, Cynthia
PY - 2022
DA - 2022/08/29
PB - American Chemical Society (ACS)
SP - 2583-2594
IS - 9
VL - 17
PMID - 36037088
SN - 1554-8929
SN - 1554-8937
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2022_Howpay Manage,
author = {Shereen A Howpay Manage and Aaron M Fleming and Hsiao Nung Chen and Cynthia Burrows},
title = {Cysteine Oxidation to Sulfenic Acid in APE1 Aids G-Quadruplex Binding While Compromising DNA Repair},
journal = {ACS Chemical Biology},
year = {2022},
volume = {17},
publisher = {American Chemical Society (ACS)},
month = {aug},
url = {https://doi.org/10.1021/acschembio.2c00511},
number = {9},
pages = {2583--2594},
doi = {10.1021/acschembio.2c00511}
}
MLA
Cite this
MLA Copy
Howpay Manage, Shereen A., et al. “Cysteine Oxidation to Sulfenic Acid in APE1 Aids G-Quadruplex Binding While Compromising DNA Repair.” ACS Chemical Biology, vol. 17, no. 9, Aug. 2022, pp. 2583-2594. https://doi.org/10.1021/acschembio.2c00511.