Abstract

The most successful immunotherapeutic agents are blocking antibodies to either programmed cell death-1 (PD-1), an inhibitory receptor expressed on T lymphocytes, or to its ligand, programmed cell death-ligand 1 (PD-L1). Nevertheless, many patients do not respond, and additional approaches, specifically blocking other inhibitory receptors on T cells, are being explored. Importantly, the source of the ligands for these receptors are often the tumor cells. Indeed, cancer cells express high levels of PD-L1 upon stimulation with interferon-γ (IFN-γ), a major cytokine in the tumor microenvironment. The increase in PD-L1 expression serves as a negative feedback towards the immune system, and allows the tumor to evade the attack of immune cells. A potential novel immunoregulator is mesencephalic astrocyte-derived neurotrophic factor (MANF), an endoplasmic reticulum (ER)-resident protein that is secreted from pancreatic beta cells upon cytokines activation, and can induce an alternatively activated macrophage phenotype (M2), and thus may support tumor growth. While MANF was shown to be secreted from pancreatic beta cells, its IFN-γ-induced secretion from tumor cells has never been assessed. Here we found that IFN-γ induced MANF secretion from diverse tumor cell-lines—melanoma cells, colon carcinoma cells and hepatoma cells. Mechanistically, there was no increase in MANF RNA or intracellular protein levels upon IFN-γ stimulation. However, IFN-γ induced ER calcium depletion, which was necessary for MANF secretion, as Dantrolene, an inhibitor of ER calcium release, prevented its secretion. Thus, MANF is secreted from IFN-γ-stimulated tumor cells, and further studies are required to assess its potential as a drug target for cancer immunotherapy.

Highlights

  • The tumor microenvironment includes a variety of all major subsets of the cellular immune system [1], including lymphocytes and myeloid cells, immunoregulatory mechanisms restrain their function and prevent tumor rejection [2, 3].One of the major immunoregulatory mechanisms to control lymphocyte activity are coreceptors that are engaged along with the antigen receptor

  • In the present study we found that mesencephalic astrocyte-derived neurotrophic factor (MANF) is secreted from several tumor cell-lines upon IFNγ treatment, both human and murine, and that this secretion is mediated through endoplasmic reticulum (ER) calcium depletion

  • Mesencephalic astrocyte-derived neurotrophic factor is secreted from interferon-γ–activated tumor cells proteins, microbicidal molecules, phagocytic receptors, chemokines, cytokines, antigen-presenting molecules (MHC) and immunoregulators like programmed cell death-ligand 1 (PD-L1) [30]

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Summary

Introduction

The tumor microenvironment includes a variety of all major subsets of the cellular immune system [1], including lymphocytes and myeloid cells, immunoregulatory mechanisms restrain their function and prevent tumor rejection [2, 3].One of the major immunoregulatory mechanisms to control lymphocyte activity are coreceptors that are engaged along with the antigen receptor. There are several known negative, or inhibitory co-receptors, known as checkpoints, and the more established ones are programmed cell death-1 (PD-1) [4], CTLA-4 [5], Lag-3 [6], Tim-3 [7], and TIGIT [8] These receptors, upon interaction with their corresponding ligands, recruit phosphatases that dephosphorylate signaling proteins which are necessary to drive T cell activation, inhibiting T cell function. Utilizing this important arm of immunoregulation, blocking antibodies against PD1 and CTLA-4 were developed, and exhibit unprecedented efficacy in several cancer indications, by improving anti-tumor T cells response [2, 3]

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