본문으로 건너뛰기
← 뒤로

HSF2-HSP110 axis supports genome stability via RNA polymerase II transcription and DNA repair.

The Journal of cell biology 2026 Vol.225(6) Heat shock proteins research
OpenAlex 토픽 · Heat shock proteins research Effects of Radiation Exposure DNA Repair Mechanisms

Jin X, Xi C, Pandya B, Pang J, Fernandez D, Eroglu B, Moskophidis D, Mivechi NF

📝 환자 설명용 한 줄

The precise regulation of RNA polymerase II (RNAPII) is essential for transcriptional fidelity and genome stability.

이 논문을 인용하기

BibTeX ↓ RIS ↓
APA Xiongjie Jin, Caixia Xi, et al. (2026). HSF2-HSP110 axis supports genome stability via RNA polymerase II transcription and DNA repair.. The Journal of cell biology, 225(6). https://doi.org/10.1083/jcb.202508059
MLA Xiongjie Jin, et al.. "HSF2-HSP110 axis supports genome stability via RNA polymerase II transcription and DNA repair.." The Journal of cell biology, vol. 225, no. 6, 2026.
PMID 41995727

Abstract

The precise regulation of RNA polymerase II (RNAPII) is essential for transcriptional fidelity and genome stability. Here, we identify a previously unrecognized genotoxic stress-responsive transcriptional axis composed of heat shock factor 2 (HSF2) and its client chaperone HSP110, which is activated by x-irradiation (ionizing irradiation [IR]). Loss of HSF2 or HSP110 increases DNA damage and heightens IR sensitivity. Mechanistically, the HSF2-HSP110 axis safeguards genome stability by sustaining RNAPII function, specifically its processivity and C-terminal domain (CTD) phosphorylation at serine 7, which are critical for efficient transcription. Consequently, disruption of this axis causes transcriptional dysregulation, conflicts during DNA replication, altered pre-mRNA splicing, and reduced levels of DNA repair genes, resulting in sustained DNA damage. In vivo, loss of HSF2 accelerates development of IR-induced T cell lymphoma by impairing transcriptional regulation, leading to inhibition of DNA repair gene expression. These findings define the HSF2-HSP110 axis as a critical transcriptional mechanism in the genotoxic stress response and suggest a therapeutic vulnerability for sensitizing tumors to genotoxic therapies.

MeSH Terms

RNA Polymerase II; DNA Repair; Humans; Transcription, Genetic; Genomic Instability; DNA Damage; Heat Shock Transcription Factors; Animals; HSP110 Heat-Shock Proteins; Mice; Phosphorylation; Heat-Shock Proteins; Transcription Factors

같은 제1저자의 인용 많은 논문 (5)