Unraveling Systemic Responses to NQO1-Activated IB-DNQand Rucaparib Single and Dual Agent Therapy in Triple-Negative Breast Cancers
Runnebohm, A. M.; Wijeratne, H. S.; Peck Justice, S. A.; Wijeratne, A. B.; Roy, G.; Smith, J. J.; Singh, N.; Hergenrother, P.; Boothman, D. A.; Motea, E. A.; Mosley, A. L.
Show abstract
Triple negative breast cancer (TNBC) is a highly aggressive breast cancer that is unresponsive to hormonal therapies. One potential TNBC-specific therapeutic target is NQO1, as it is highly expressed in many TNBC patients and lowly expressed in non-cancer tissues. Here we use a derivative of DNQ, isobutyl-deoxynyboquinone (IB-DNQ) that is more potent and specific in killing TNBC cells than NQO1-activator {beta}-lapachone while displaying strong NQO1-dependence. We evaluated the cellular signaling changes that occur following 4-hour treatment of TNBC cells with either single agent or combination IB-DNQ and / or PARP inhibitor (Rucaparib). Short treatments (4 hours) with IB-DNQ alone or combined with the PARP inhibitor Rucaparib revealed few changes in protein abundance but significant rapid alterations in protein phosphorylation and thermal stability, with clear synergy in the combination treatment. Key phosphorylated targets linked to RNA Polymerase II inhibition and DNA damage response were altered during our short time treatment. Thermal proteome profiling (TPP) identified novel, combination-specific changes in protein biophysical state suggesting new therapeutic vulnerabilities in TNBC cells. Our findings highlight how even brief treatments can uncover distinct biophysical protein changes via TPP, offering a resource for mechanistic studies of IB-DNQ mechanism of action and the development of NQO1-activated therapeutics for TNBC treatment.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Proximity-dependent biotinylation to elucidate the interactome of TNK2 non-receptor tyrosine kinase 96%
- PELSA-Decipher: a software tool for the processing and interpretation of ligand protein interaction dataset acquired by PELSA 93%
- PD-L1 glycosylation and its impact on binding to clinical antibodies 93%
Similar papers in this journal
- Data independent acquisition mass spectrometry (DIA-MS) analysis of FFPE rectal cancer samples offers in depth proteomics characterization of response to neoadjuvant chemoradiotherapy 96%
- Protein profiling of WERI RB1 and etoposide resistant WERI ETOR reveals new insights into topoisomerase inhibitor resistance in retinoblastoma 95%
- A proteomic study of the dual oncogenic and tumor- suppressive roles of SIRT3 in lung and breast cancer cell lines 94%
Similar papers in this journal
- Altering mammalian transcription networking with ADAADi: An inhibitor of ATP-dependent chromatin remodeling 94%
- Nebulized and intravenous enzyme replacement therapy in mice with mucopolysaccharidosis type II 94%
- Potential mechanisms of action of celastrol against rheumatoid arthritis: transcriptomic and proteomic analysis 94%
Similar papers in this journal
- Peroxidasin protein expression and enzymatic activity in metastatic melanoma cell lines are associated with invasive potential 93%
- Discovery of decreased ferroptosis in male colorectal cancer patients with KRAS mutations 93%
- Dynamic posttranslational modifications of cytoskeletal proteins unveil hot spots under nitroxidative stress 93%