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Updated: Jan 9, 2026

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Antibody-Mediated Targeting of Secretory Protein SCUBE3 Suppresses Cancer Progression by Inhibiting Oncogenic
Deepika Singh1,2, Benjamin C Onyeagucha3, Daisy Medina1,2
1Greehey Children's Cancer Research Institute, University of Texas Health Science Center at San Antonio, San Antonio, Texas.
Abstract:
Approaches targeting factors that simultaneously promote tumor growth and progression, induce therapy resistance, and inhibit antitumor immunity offer clear benefits over therapies targeting only one of these tumor-promoting processes. Through comprehensive loss-of-function genomic screening, we identified SCUBE3 as a pivotal factor that supports survival and therapy resistance and also orchestrates an immunosuppressive tumor microenvironment. Secretory SCUBE3 supported oncogenic activity through interactions with key oncogenic cell surface receptor proteins, including EGFR, mutant CALR, and TGFβRI/II. These interactions activated the transcription factors FOXR2 and c-Myc, promoting cancer cell proliferation and therapy resistance by enhancing DNA damage repair. Additionally, the SCUBE3-FOXR2 axis created an immunosuppressive tumor microenvironment by facilitating recruitment of the DNMT1 epigenetic repressor complex to the transcription regulator IRF1, thereby inhibiting the expression of MHC-I and MHC-II genes. A first-in-class neutralizing antibody targeting SCUBE3, which was developed using a sophisticated antibody discovery platform and engineered with specific mutations in the heavy chain for enhanced specificity and efficacy, demonstrated profound therapeutic potential across various cancer types in preclinical models, including patient-derived breast and ovarian cancer xenografts. This discovery marks an advancement toward developing a targeted therapy for cancers characterized by hyperactive SCUBE3-associated signaling pathways.
Significance:
Targeting SCUBE3 with a neutralizing antibody inhibits tumor growth and metastasis by blocking oncogenic signaling through FOXR2 and c-Myc and by circumventing immunosuppression, providing a promising pan-cancer treatment approach.
Insights
Scientists discovered that SCUBE3 drives tumor growth, therapy resistance, and immune suppression. Targeting SCUBE3 with a novel antibody shows promise as a new cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Targeting multiple tumor-promoting processes simultaneously offers advantages over single-target therapies.
- SCUBE3 is implicated in tumor progression, therapy resistance, and immune evasion.
Purpose of the Study:
- To identify key factors promoting tumor growth, therapy resistance, and immune suppression.
- To investigate the therapeutic potential of targeting SCUBE3.
Main Methods:
- Comprehensive loss-of-function genomic screening.
- Investigated SCUBE3 interactions with cell surface receptors (EGFR, CALR, TGFβRI/II).
- Analyzed SCUBE3-FOXR2 axis effects on gene expression and immune microenvironment.
Main Results:
- SCUBE3 supports cancer cell survival and therapy resistance via EGFR, CALR, and TGFβRI/II interactions.
- SCUBE3 activates FOXR2 and c-Myc, enhancing proliferation and DNA repair.
- The SCUBE3-FOXR2 axis suppresses anti-tumor immunity by inhibiting MHC-I and MHC-II expression.
- A neutralizing antibody against SCUBE3 showed therapeutic potential in preclinical cancer models.
Conclusions:
- SCUBE3 is a pivotal factor in tumor progression, resistance, and immune evasion.
- Targeting SCUBE3 represents a novel therapeutic strategy for various cancers.
- A first-in-class SCUBE3-neutralizing antibody demonstrates significant preclinical efficacy.
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