Transketolase promotes RNF20 ‐dependent H2BK120 ubiquitination and DNA repair through a non‐enzymatic adaptor function

Efficient repair of DNA double-strand breaks (DSBs) is essential for maintaining genome stability and conferring tumor radioresistance. Histone H2B monoubiquitination at lysine 120 (H2BK120ub), catalyzed by the RNF20/RNF40 E3 ligase complex, promotes DSB repair by coordinating chromatin remodeling and repair factor recruitment. Here we identify transketolase (TKT) as a non-enzymatic regulator of DNA damage repair in colorectal cancer cells. TKT enhances DNA repair efficiency and radioresistance independently of its catalytic activity by facilitating RNF20-dependent H2BK120ub. Mechanistically, TKT interacts with both the RNF20/RNF40 complex and the FACT chromatin remodeling complex, functioning as a non-enzymatic adaptor that facilitates FACT-RNF20 association and RNF20 foci formation following DNA damage. Disruption of this TKT-FACT-RNF20 axis impairs RNF20 foci formation and H2BK120ub induction, increases DNA damage, and enhances radiosensitivity. These findings reveal a previously unrecognized non-enzymatic adaptor function of TKT in DNA damage repair and highlight a potential vulnerability in radioresistant tumors.

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Publication Details

Journal
FEBS Journal
Published
2026-09-09
DOI
https://doi.org/10.1111/febs.70720
Primary Topic
Biochemical Acid Research Studies
Type
article
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Transketolase promotes RNF20 ‐dependent H2BK120 ubiquitination and DNA repair through a non‐enzymatic adaptor function

Ye Zhao, Fang Wang, Linzhu Luo, Yinian Chang et al.
FEBS Journal
Biochemical Acid Research Studies
article

Transketolase promotes RNF20 ‐dependent H2BK120 ubiquitination and DNA repair through a non‐enzymatic adaptor function

Ye Zhao, Fang Wang, Linzhu Luo, Yinian Chang, Bo Yao, Ning Yu
article en

Abstract

Efficient repair of DNA double-strand breaks (DSBs) is essential for maintaining genome stability and conferring tumor radioresistance. Histone H2B monoubiquitination at lysine 120 (H2BK120ub), catalyzed by the RNF20/RNF40 E3 ligase complex, promotes DSB repair by coordinating chromatin remodeling and repair factor recruitment. Here we identify transketolase (TKT) as a non-enzymatic regulator of DNA damage repair in colorectal cancer cells. TKT enhances DNA repair efficiency and radioresistance independently of its catalytic activity by facilitating RNF20-dependent H2BK120ub. Mechanistically, TKT interacts with both the RNF20/RNF40 complex and the FACT chromatin remodeling complex, functioning as a non-enzymatic adaptor that facilitates FACT-RNF20 association and RNF20 foci formation following DNA damage. Disruption of this TKT-FACT-RNF20 axis impairs RNF20 foci formation and H2BK120ub induction, increases DNA damage, and enhances radiosensitivity. These findings reveal a previously unrecognized non-enzymatic adaptor function of TKT in DNA damage repair and highlight a potential vulnerability in radioresistant tumors.

FEBS Journal
University of Science and Technology of China (CN), Anhui Medical University (CN)
Good health and well-being
Openalex Percentile: Top 15%
Biochemical Acid Research Studies
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