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Biology subjects

Manoury, B.

Publications and source records attributed to Manoury, B..

2 recordsLinked to original sources

Microglial P2X4 receptors promote ApoE degradation and cognitive deficits in Alzheimer disease

Numerous evidence support that microglia contributes to the progression of Alzheimers disease. P2X4 receptors are ATP-gated channels, which are de novo expressed in a subset of reactive microglia associated to various pathological contexts, contributing to microglial functions. Here, we investigated the role of P2X4 in the context of Alzheimer disease (AD). In both human AD brain and APPswe/PSEN1dE9 mice, P2X4 is almost exclusively expressed in plaque associated microglia. Genetic deletion of P2rx4 results in the reversal of cognitive declines and in a lower amount of soluble A{beta}1 -42 in 12 months old APP/PS1 mice, while no obvious alteration of plaque associated microglia characteristics is observed. Using proteomic, we identified ApoE as a specific P2X4 interacting protein. We found that P2X4 regulates lysosomal cathepsin B activity promoting ApoE degradation; P2rx4 deletion results in higher amount of intracellular and secreted ApoE in both BMDM and microglia from APP/PS1 brain. Our results support that microglial P2X4 promotes lysosomal ApoE degradation, indirectly altering A{beta} peptide clearance, which in turn might promote synaptic dysfunctions and cognitive deficits. Our findings also uncover a specific interplay between purinergic signaling, microglial ApoE, sA{beta} species and cognitive deficits associated with AD.

neuroscience↗

The Autophagy Receptor TAX1BP1 (T6BP) is a novel player in antigen presentation by MHC-II molecules.

CD4+ T lymphocytes play a major role in the establishment and maintenance of immunity. They are activated by antigenic peptides derived from extracellular or newly synthesized (endogenous) proteins presented on the surface of antigen presenting cells (APCs) by the MHC-II molecules. The pathways leading to endogenous MHC-II presentation remain poorly characterized. We demonstrate here that the autophagy receptor, T6BP, influences both autophagy-dependent and -independent endogenous presentation of HIV- and HCMV-derived peptides. By studying the immunopeptidome of MHC-II molecules, we show that T6BP affects both the quantity and quality of peptides presented. T6BP silencing induces the mislocalization of the MHC-II-loading compartments and a rapid degradation of the invariant chain (CD74) without altering the expression and internalization kinetics of MHC-II molecules. We determined the interactome of T6BP, identified calnexin as a T6BP partner and show that CANX cytosolic tail is required for this interaction. Remarkably, calnexin silencing replicates the functional consequences of T6BP silencing: decreased CD4+ T cell activation and exacerbated CD74 degradation. Altogether, we unravel T6BP as a key player of the MHC-II-restricted endogenous presentation pathway and we propose one potential mechanism of action.

immunology↗