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July 22, 2026Cell Biology and Toxicology0 citationsOpen Access

UBE2C at the crossroads of cell cycle regulation and DNA damage response in cancer

SPS. N. PaulAKAmoolya KandettuSCSanjiban Chakrabarty

Key Points

  • The review aims to elucidate the role of UBE2C in cell cycle regulation and DNA damage response across various cancers.
  • Explored UBE2C expression patterns in multiple cancer types including breast, lung, and ovarian cancers.
  • Examined the regulatory effects of specific miRNAs (miR-381, miR-503, miR-205) on UBE2C.
  • Analyzed UBE2C's contributions to cancer traits such as genomic instability and therapy resistance.
  • UBE2C is overexpressed in various carcinomas, linked to increased tumor aggressiveness and genomic instability.
  • Targeting UBE2C through miRNAs or pharmacological agents led to reduced cell proliferation and enhanced therapy sensitivity.
  • UBE2C serves as a potential biomarker and therapeutic target for cancer diagnostics and treatment.

Abstract

Abstract The ubiquitin–proteasome system (UPS) is an important regulator of numerous cellular pathways, including DNA repair, protein degradation, the cell cycle, and signal transduction. UBE2C, a member of the ubiquitin-conjugating enzyme family, facilitates the ubiquitination of essential cellular regulators. Notably, UBE2C is consistently overexpressed in breast, lung, brain, hepatocellular, and ovarian carcinomas. Increased UBE2C expression is associated with tumour aggressiveness, genomic instability, epithelial-to-mesenchymal transition, and resistance to chemotherapy and radiotherapy. Our review explores the mechanistic involvement of UBE2C in diverse cancers, with a particular focus on its involvement in DNA damage repair mediated by the anaphase-promoting complex (APC/C). Furthermore, the regulatory effects of miR-381, miR-503, and miR-205 on UBE2C expression were examined, highlighting the promising prospects of these miRNAs for targeted cancer therapy. The involvement of UBE2C in different cancer hallmarks underscores its potential as a biomarker and therapeutic target. A comprehensive understanding of its mechanistic involvement in cell cycle regulation and DNA repair will further enhance its application in diagnostics, personalised medicine, and precision medicine. Graphical Abstract UBE2C acts as a central regulator of tumour progression by coordinating cell-cycle control, oncogenic signalling, DNA damage repair, and therapy resistance. Dysregulated UBE2C expression promotes cancer cell proliferation, survival, genome maintenance, and treatment resistance, whereas its inhibition through miRNAs, RNAi, or pharmacological agents induces cell-cycle arrest, apoptosis, and enhanced therapeutic sensitivity, supporting UBE2C as an attractive target for cancer therapy. Created with BioRender.com.

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Cite This Study

Paul et al. (2026) studied this question.

synapsesocial.com/papers/6a605ea14163e025518d85e6https://doi.org/10.1007/s10565-026-10230-y
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