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Published on: November 1, 2019
Inhibition of SUMOylation Induces Adaptive Antitumor Immunity against Pancreatic Cancer through Multiple Effects on
Suna Erdem1, Hyojae James Lee1, Jayanth Surya Narayanan Shankara Narayanan1
1Moores Cancer Center, UC San Diego, La Jolla, California.
Abstract:
Improvement of outcome in patients with pancreatic ductal adenocarcinoma (PDAC) requires exploration of novel therapeutic targets. Thus far, most studies of PDAC therapies, including those inhibiting small ubiquitin-like modifications (SUMOylation), have focused on PDAC epithelial cell biology, yet SUMOylation occurs in a variety of cell types. The mechanisms by which SUMOylation impacts PDAC in the context of its tumor microenvironment are poorly understood. We used clinically relevant orthotopic PDAC mouse models to investigate the effect of SUMOylation inhibition using a specific, clinical-stage compound, TAK-981. In contrast to its inhibition of PDAC cell proliferation in vitro, the survival benefit conferred by TAK-981 in vivo is dependent on the presence of T cells, suggesting that induction of adaptive antitumor immunity is an important antitumor effect of SUMOylation inhibition in vivo. To understand how this adaptive antitumor immunity is promoted, we investigated how SUMOylation inhibition in vivo alters major cell types/subtypes and their communications in the PDAC tumor microenvironment by performing transcriptomic analyses at single-cell resolution, which allowed mapping of cells in our orthotopic mouse model to cells in human PDAC tumors based on gene expression profiles. Findings are further validated by flow cytometry, immunofluorescence, IHC, western blots, and qPCR. The single-cell transcriptome dataset provided here suggests several combination strategies to augment adaptive immune responses that are necessary for durable disease control in patients with PDAC.
Insights
SUMOylation inhibition with TAK-981 enhances pancreatic ductal adenocarcinoma (PDAC) treatment by boosting T cell-mediated antitumor immunity. This approach reveals potential combination therapies for improved patient outcomes.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Pancreatic ductal adenocarcinoma (PDAC) outcomes necessitate novel therapeutic targets.
- SUMOylation (small ubiquitin-like modification) is a key cellular process, but its role in the PDAC tumor microenvironment remains unclear.
- Current therapies often overlook the tumor microenvironment's complexity.
Purpose of the Study:
- To investigate the therapeutic potential of SUMOylation inhibition in PDAC.
- To elucidate the mechanisms underlying SUMOylation inhibition's effects within the PDAC tumor microenvironment.
- To identify strategies for enhancing adaptive antitumor immunity in PDAC.
Main Methods:
- Utilized clinically relevant orthotopic PDAC mouse models.
- Administered TAK-981, a clinical-stage SUMOylation inhibitor.
- Performed single-cell RNA sequencing (scRNA-seq) for transcriptomic analysis.
- Validated findings using flow cytometry, immunofluorescence, IHC, Western blots, and qPCR.
Main Results:
- TAK-981 demonstrated in vitro inhibition of PDAC cell proliferation.
- In vivo survival benefit of TAK-981 was dependent on T cells, indicating immune system involvement.
- scRNA-seq revealed alterations in PDAC tumor microenvironment cell types and communications.
- Mapped mouse model cells to human PDAC cells via gene expression profiles.
Conclusions:
- SUMOylation inhibition promotes adaptive antitumor immunity in PDAC.
- The study provides a single-cell transcriptomic dataset for PDAC research.
- Findings suggest combination strategies to augment immune responses for durable disease control in PDAC patients.
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