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Biology subjects

Passang, T.

Publications and source records attributed to Passang, T..

2 recordsLinked to original sources

Identification and characterization of vasoactive intestinal peptide receptor antagonists with high-affinity and potent anti-leukemia activity

Vasoactive intestinal peptide (VIP) is a neuropeptide involved in tumor growth and immune modulating functions. Previous research indicated that a VIP antagonist (VIPhyb) enhances T-cell activation and induces T-cell-dependent anti-leukemic activity in mice. We created a combinatorial library of VIPhyb C-terminal sequence variations to develop a more potent VIP-receptor (VIP-R) antagonist, hypothesizing that specific amino acid substitutions would improve receptor binding and plasma stability. In silico screening analyses identified sequences with improved docking scores predicting increased binding affinity to human VIP receptors VPAC1 and VPAC2. Fifteen peptides were synthesized and tested for their ability to potentiate activation of purified mouse and human T cells and enhance T cell-dependent anti-leukemia responses in murine models of acute myeloid leukemia. Treating C57Bl/6 mice engrafted with a C1498 myeloid leukemia cell line with daily subcutaneous injections of VIP-R antagonist peptides induced T cell activation resulting in specific anti-leukemia responses. Strikingly, the predicted binding affinity of the VIP-R antagonists to VIP receptors correlated positively with their ability to augment mouse T-cell proliferation and anti-leukemia activity. ANT308 and ANT195 emerged as top candidates due to their high predicted VIP-R binding, low EC50 for in vitro T cell activation, and potent anti-leukemia activities. ANT308 decreased CREB phosphorylation, a downstream signaling pathway of the VIP receptor, and stimulated granzyme B and perforin expression in CD8+ T cells from AML patients. Combining in silico modeling, in vitro T cell activation properties, and in vivo anti-leukemia activity has identified promising VIP-R antagonist candidates for further development as novel immunotherapies for AML, especially for patients with relapsed disease.

immunology↗

VPAC2 receptor signaling promotes pancreatic cancer cell growth and decreases the immunogenicity of the tumor microenvironment.

Identifying mechanisms underlying tumor growth and immune resistance is needed to treat pancreatic ductal adenocarcinoma (PDAC) effectively. The complexity of the tumor microenvironment (TME) suggests that the crosstalk between cells in the TME could drive drug resistance and relapse in PDAC. We have previously determined that vasoactive intestinal peptide (VIP) is overexpressed in PDAC and that VIP receptors expressed on T cells are a targetable pathway that sensitizes PDAC to anti-PD1 therapy. In this study, we show that pancreatic cancer cells engage in autocrine signaling of VIP through VIP-receptor 2 (VPAC2), and that high co-expression of VIP with VPAC2 leads to reduced relapse-free survival in PDAC patients. Mechanistically, we identified piwi-like RNA-mediated gene silencing2 (Piwil2) as a tumor-cell intrinsic protein downstream of VPAC2 that regulates cancer cell growth. In addition, we discovered TGF{beta}-1 as a potential tumor-extrinsic inhibitor of T cell function induced by VPAC2 signaling. In vivo, knock out and knockdown of VPAC2 on PDAC cells led to reduced tumor growth rate and increased sensitivity to anti-PD-1 therapy in various mouse models of PDAC that were T-cell dependent. Overall, these findings emphasize the implications of VIP/VPAC2 signaling in the PDAC tumor microenvironment and further support the rationale for developing VPAC2-specific antagonists. SignificanceThe autocrine VIP signaling via VPAC2 promotes cancer cell growth and dampens T cell function in pancreatic ductal adenocarcinoma and thus represents a potential therapeutic target in PDAC.

cancer biology↗