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Ke Cong
Ke Cong
Dana–Farber/Harvard Cancer Center
Verified email at dfci.harvard.edu
Title
Cited by
Cited by
Year
Replication gaps are a key determinant of PARP inhibitor synthetic lethality with BRCA deficiency
K Cong, M Peng, AN Kousholt, WTC Lee, S Lee, S Nayak, J Krais, ...
Molecular cell 81 (15), 3128-3144. e7, 2021
2182021
Replication Gaps Underlie BRCA Deficiency and Therapy Response
NJ Panzarino, JJ Krais, K Cong, M Peng, M Mosqueda, SU Nayak, ...
Cancer research 81 (5), 1388-1397, 2021
1352021
Inhibition of the translesion synthesis polymerase REV1 exploits replication gaps as a cancer vulnerability
S Nayak, JA Calvo, K Cong, M Peng, E Berthiaume, J Jackson, AM Zaino, ...
Science advances 6 (24), eaaz7808, 2020
942020
Opposing roles of FANCJ and HLTF protect forks and restrain replication during stress
M Peng, K Cong, NJ Panzarino, S Nayak, J Calvo, B Deng, LJ Zhu, ...
Cell reports 24 (12), 3251-3261, 2018
682018
Loss of nuclear DNA ligase III reverts PARP inhibitor resistance in BRCA1/53BP1 double-deficient cells by exposing ssDNA gaps
MP Dias, V Tripathi, I van der Heijden, K Cong, EM Manolika, J Bhin, ...
Molecular cell 81 (22), 4692-4708. e9, 2021
532021
Exploiting replication gaps for cancer therapy
K Cong, SB Cantor
Molecular cell 82 (13), 2363-2369, 2022
362022
PARPi synthetic lethality derives from replication-associated single-stranded DNA gaps
K Cong, AN Kousholt, M Peng, NJ Panzarino, WTC Lee, S Nayak, J Krais, ...
BioRxiv, 781989, 2019
232019
FANCJ promotes PARP1 activity during DNA replication that is essential in BRCA1 deficient cells
K Cong, N MacGilvary, S Lee, SG MacLeod, J Calvo, M Peng, ...
Nature Communications 15 (1), 2599, 2024
22024
Loss of nuclear DNA ligase III can revert PARP inhibitor resistance in BRCA1-deficient cells by increasing DNA replication stress
MP Dias, V Tripathi, I van der Heijden, K Cong, EM Manolika, P Galanos, ...
bioRxiv, 2021.03. 24.436323, 2021
22021
Prediction of cancer therapy efficacy
SB Cantor, N Panzarino, K Cong, M Bere, S Nayak
US Patent App. 17/629,893, 2022
2022
A Study of Single-stranded DNA Gaps in the Response to Replication Stress and Synthetic Lethality
K Cong
2022
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