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Her research is aimed toward understanding the mechanisms of DNA double-strand break repair in eukaryotic cells, as well as the intersection between DNA damage, oxidative stress signaling, and protein homeostasis in human cells. Research in the Paull lab is focused on the DNA damage response in eukaryotic cells, specifically the checkpoint activation and DNA repair responses that occur immediately after the introduction of chromosomal double-strand breaks. Several components of these DNA damage response systems have been implicated as tumor suppressors in mammals, and nearly all of the proteins we study are involved in the maintenance of genomic stability in eukaryotic organisms. We are also interested in the regulation of redox control and signaling that occurs in response to oxidative stress in human cells. To study these processes, we use biochemistry and molecular biology-based tools to understand how critical proteins in these pathways function and are regulated in response to stress.
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Cell Reportsno. 3 (2024): 113896-113896
Tanya T. Paull, Phillip R. Woolley
DNA Repair (2024): 103647-103647
JOURNAL OF BIOLOGICAL CHEMISTRYno. 3 (2023): S234-S234
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Journal of Biological Chemistryno. 3 (2023): S234-S234
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Rajashree A. Deshpande,Alberto Marin-Gonzalez, Hannah K. Barnes, Phillip R. Woolley,Taekjip Ha,Tanya T. Paull
biorxiv(2023)
Logan R. Myler,Beatrice Toia, Cara K. Vaughan,Kaori Takai, Andreea M. Matei,Peng Wu,Tanya T. Paull,Titia de Lange,Francisca Lottersberger
biorxiv(2023)
Hyeongsun Jeong,Minwoo Wie,In-Joon Baek, Gyuwon Sohn, Si-Hyeon Um,Seon-Gyeong Lee,Yuri Seo,Jaesun Ra,Eun A Lee,Shinseog Kim,Byung Gyu Kim,Rajashree A. Deshpande,
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