A Chk1-Sp1-CD59 axis of the DNA damage response impedes rituximab-mediated complement-dependent cytotoxicity
Chan, A. S. Y.; Jaynes, P. W.; Anbuselvan, A.; Ong, C. Z. Y.; Hoppe, M. M.; Yong, W. K.; Khanchandani, V.; Lee, J. M.; Mustafa, N.; Azaman, I.; Hoang, P. M.; Hong, G.; Chng, W. J.; Cragg, M. S.; Kappei, D.; Tripodo, C.; Jeyasekharan, A. D.
Show abstract
The DNA damage response (DDR) is a central regulator of cancer cell fate, coordinating both pro-death and pro-survival pathways in response to genotoxic stress. Here, we reveal an unexpected role for the DDR at the cell surface, in mediating immune evasion from complement-dependent cytotoxicity (CDC), an innate immune mechanism exploited by therapeutic monoclonal antibodies (mAbs). In the context of diffuse large B-cell lymphoma (DLBCL), where the anti-CD20 mAb rituximab utilizes CDC, we show that genotoxic chemotherapy induces expression of membrane-bound complement regulatory proteins (mCRPs) CD46, CD55, and CD59, thereby reducing CDC sensitivity and compromising rituximab activity. In this setting, CD59 emerged as the dominant DDR-induced inhibitor of complement-mediated killing. A high-throughput kinase inhibitor screen identified checkpoint kinase 1 (Chk1) as a critical mediator of this response. Mechanistically, DNA damage activates Chk1, enhancing CD59 transcription via an Sp1-bound promoter. Co-immunoprecipitation mass spectrometry revealed a Chk1 dependent remodelling of Sp1-associated complexes to a transcriptionally active state with recruitment of the histone acetyltransferase KAT2A. These findings expand the role of the DDR in immune resistance at the tumor cell surface, and highlight a negative interaction between chemotherapy and monoclonal antibodies that may require sequential administration or targeting of the Chk1- Sp1-CD59 axis. SignificanceThe DNA Damage Response upregulates complement-protective proteins, extending its role in modulating immune evasion at the cell surface, with direct implications for combinations of chemotherapy and monoclonal antibodies widely used in cancer.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Caspase-2 kills cells with extra centrosomes 97%
- Integrating Single-Cell Biophysical and Transcriptomic Features to Resolve Functional Heterogeneity in Mantle Cell Lymphoma 96%
- Temozolomide-induced guanine mutations create exploitable vulnerabilities of guanine-rich DNA and RNA regions in drug resistant gliomas 96%
Similar papers in this journal
- Multiple cancer types rapidly escape from multiple MAPK inhibitors to generate mutagenesis-prone subpopulations 96%
- ELP-dependent expression of MCL1 promotes resistance to EGFR inhibition in triple-negative breast cancer cells 96%
- Reporter-based screening identifies RAS-RAF stabilizing mutations as drivers of resistance to broad-spectrum RAS inhibition in colorectal cancer 95%
Similar papers in this journal
- Targeting the MYC interaction network in B-cell lymphoma via histone deacetylase 6 inhibition 96%
- EWS::FLI1-DHX9 interaction promotes Ewing sarcoma sensitivity to DNA topoisomerase 1 poisons by altering R-loop metabolism 96%
- Oncogenic RAS sensitizes cells to drug-induced replication stress via transcriptional silencing of P53 95%
Similar papers in this journal
- Integrative multiomic approaches reveal ZMAT3 and p21 as conserved hubs in the p53 tumor suppression network 95%
- The Second Mitochondrial Activator of Caspases (SMAC) regulates growth, inflammation and mitochondrial integrity in cancer cells 94%
- CRISPR Screens Identify Novel Regulators of cFLIP Dependency and Ligand-Independent, TRAIL-R1-Mediated Cell Death 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.