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Koumantou, D.

Publications and source records attributed to Koumantou, D..

2 recordsLinked to original sources

Discovery of an orally available potent ER aminopeptidase 1 (ERAP1) inhibitor that enhances anti-tumor responses and limits inflammatory autoimmunity in vivo.

Endoplasmic reticulum aminopeptidase 1 (ERAP1) is an intracellular enzyme that can regulate immune responses primarily by proteolytically processing peptides before loading and presentation on the cell surface by major histocompatibility class I molecules (MHC-I). ERAP1 activity can either reduce the immunogenicity of cancer cells by over-trimming cancer-associated antigenic peptides or contribute to autoimmunity by generating self-antigenic peptides. As a result, ERAP1 inhibition has emerged as a tractable approach for cancer immunotherapy and specific classes of autoimmunity. Here, we describe the discovery, after hit-to-lead optimization, of a potent and selective ERAP1 inhibitor based on the pyrrolidine 3-carboxylic acid scaffold that targets the regulatory allosteric site. The compound has favourable in vivo pharmacokinetics, including oral bioavailability, and can regulate the immunopeptidome of cancer cells and enhance cancer cell antigenicity in vivo in a dose-dependent manner, controlling tumor growth. In addition, when administered in the murine collagen-induced arthritis model, it does not induce any exacerbation of autoimmune responses but rather results in a dose-dependent therapeutic benefit. Our results demonstrate that ERAP1 inhibition can constitute a tractable approach to modulating immune responses for therapeutic applications, providing mechanistic insight and a valuable lead and in vivo tool for further drug development efforts and for interrogating ERAP1 biology.

immunology↗

Fc immunoreceptors promote autophagy to regulate monocyte functions

Receptors for the Fc fragment of immunoglobulin G (FcyRs) are critical in the defense against pathogens and in monoclonal antibody-based therapies. When activated by immune complexes or opsonized particles, FcyRs are endocytosed. Components of the endocytosis machinery are used during autophagy, a process which is triggered by starvation or by activation of specific receptors. In this work, we demonstrate that activation of FcyRs initiates autophagy, characterized by formation of p62 protein puncta and activation of ULK1, a major component of the autophagy initiation complex. Autophagy induction downstream of FcyRs activation involves the protein phosphatase Pp2a and its enzymatic activity, as demonstrated by in situ protein labeling. In animal models in which autophagy was inactivated or enhanced in myeloid cells, autophagy negatively regulates pro-inflammatory cytokine production downstream of FcyRs receptors, while being required for FcyRs -mediated antibody-induced cell phagocytosis and myeloid cell survival. Our results suggest that, for antibody-based therapeutic strategies that target the activation of FcyRs, an additional level of control can be obtained by manipulation of autophagy.

cell biology↗