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Monypenny, J.

Publications and source records attributed to Monypenny, J..

2 recordsLinked to original sources

TOPII-targeting and MUS81 deficiency sensitise HER2-low tumour models to T-DXd

In this study, we identify Topoisomerase II (TopII ) targeting and MUS81 deficiency as sensitisers to trastuzumab deruxtecan (T-DXd), a HER2-targeting antibody-drug conjugate with a potent topoisomerase I poison payload that is of clinical importance in the treatment of HER2 expressing solid tumours in a range of cancer types. Using preclinical tumour spheroid models of breast and colorectal cancer, we show that TopII targeting with doxorubicin sensitises HER2-low tumour cells to T-DXd, elevating cell cytotoxicity, DNA damage, and checkpoint pathway activation. T-DXd treatment, both as a single agent and in combination with doxorubicin, increases TopII expression, highlighting this nuclear endonuclease as a potential candidate biomarker for T-DXd response in both the HER2-high and HER2-low setting. Using isogenic CRISPR models, we show that genetic loss of the MUS81 structure-specific endonuclease, a key processor of branched DNA structures and under-replicated DNA, sensitises HER2-low colorectal cancer cells to T-DXd. Given that reduced expression of MUS81 is closely related to metastasis and poor prognosis in colorectal carcinoma, our findings highlight the potential utility of these treatment combinations in a subset of colorectal cancer patients that present with HER2-positve/MUS81-low disease.

cancer biology↗

Chemotherapeutic regulation of the ROS/MondoA-dependent TXNIP/GDF15 axis; and derivation of a new organoid metric as a predictive biomarker

Chemotherapy, the standard of care treatment for cancer patients with advanced disease, has been increasingly recognised to activate host immune responses to produce durable outcomes. Here, in colorectal adenocarcinoma (CRC) we identify chemotherapy-induced Thioredoxin Interacting Protein (TXNIP), a MondoA-dependent tumor suppressor gene, as a negative regulator of Growth/Differentiation Factor 15 (GDF15). GDF15 is a negative prognostic factor in CRC and promotes the differentiation of regulatory T cells (Tregs), through CD48 ligation. Intriguingly, multiple models including patient-derived tumor organoids demonstrate that loss of TXNIP/GDF15 axis functionality is associated with advanced disease or chemotherapeutic resistance, with transcriptomic or proteomic GDF15/TXNIP ratios showing potential as a prognostic biomarker. These findings illustrate a potentially common pathway where chemotherapy-induced epithelial stress drives local immune remodelling for patient benefit, with disruption of this pathway seen in refractory or advanced cases.

cancer biology↗