26 research outputs found

    Vascular injury derived apoptotic exosome-like vesicles trigger autoimmunity

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    According to a central tenet of classical immune theory, a healthy immune system must avoid self-reactive lymphocyte clones but we now know that B cells repertoire exhibit some level of autoreactivity. These autoreactive B cells are thought to rely on self-ligands for their clonal selection and survival. Here, we confirm that healthy mice exhibit self-reactive B cell clones that can be stimulated in vitro by agonists of toll-like receptor (TLR) 1/2, TLR4, TLR7 and TLR9 to secrete anti-LG3/perlecan. LG3/perlecan is an antigen packaged in exosome-like structures released by apoptotic endothelial cells (ApoExos) upon vascular injury. We demonstrate that the injection of ApoExos in healthy animals activates the IL-23/IL-17 pro-inflammatory and autoimmune axis, and produces several autoantibodies, including anti-LG3 autoantibodies and hallmark autoantibodies found in systemic lupus erythematosus. We also identify γδT cells as key mediators of the maturation of ApoExos-induced autoantibodies in healthy mice. Altogether we show that ApoExos released by apoptotic endothelial cells display immune-mediating functions that can stimulate the B cells in the normal repertoire to produce autoantibodies. Our work also identifies TLR activation and γδT cells as important modulators of the humoral autoimmune response induced by ApoExos

    The exposure of autoantigens by microparticles underlies the formation of potent inflammatory components: the microparticle-associated immune complexes

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    Immunoglobulins, antigens and complement can assemble to form immune complexes (IC). ICs can be detrimental as they propagate inflammation in autoimmune diseases. Like ICs, submicron extracellular vesicles termed microparticles (MP) are present in the synovial fluid from patients affected with autoimmune arthritis. We examined MPs in rheumatoid arthritis (RA) using high sensitivity flow cytometry and electron microscopy. We find that the MPs in RA synovial fluid are highly heterogeneous in size. The observed larger MPs were in fact MP-containing ICs (mpICs) and account for the majority of the detectable ICs. These mpICs frequently express the integrin CD41, consistent with platelet origin. Despite expression of the Fc receptor FcγRIIa by platelet-derived MPs, we find that the mpICs form independently of this receptor. Rather, mpICs display autoantigens vimentin and fibrinogen, and recognition of these targets by anti-citrullinated peptide antibodies contributes to the production of mpICs. Functionally, platelet mpICs are highly pro-inflammatory, eliciting leukotriene production by neutrophils. Taken together, our data suggest a unique role for platelet MPs as autoantigen-expressing elements capable of perpetuating formation of inflammatory ICs

    Portrait of blood-derived extracellular vesicles in patients with Parkinson's disease.

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    The production of extracellular vesicles (EV) is a ubiquitous feature of eukaryotic cells but pathological events can affect their formation and constituents. We sought to characterize the nature, profile and protein signature of EV in the plasma of Parkinson's disease (PD) patients and how they correlate to clinical measures of the disease. EV were initially collected from cohorts of PD (n = 60; Controls, n = 37) and Huntington's disease (HD) patients (Pre-manifest, n = 11; manifest, n = 52; Controls, n = 55) - for comparative purposes in individuals with another chronic neurodegenerative condition - and exhaustively analyzed using flow cytometry, electron microscopy and proteomics. We then collected 42 samples from an additional independent cohort of PD patients to confirm our initial results. Through a series of iterative steps, we optimized an approach for defining the EV signature in PD. We found that the number of EV derived specifically from erythrocytes segregated with UPDRS scores corresponding to different disease stages. Proteomic analysis further revealed that there is a specific signature of proteins that could reliably differentiate control subjects from mild and moderate PD patients. Taken together, we have developed/identified an EV blood-based assay that has the potential to be used as a biomarker for PD

    Translational Control through eIF2alpha Phosphorylation during the Leishmania Differentiation Process

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    The parasitic protozoan Leishmania alternates between an invertebrate and a mammalian host. Upon their entry to mammalian macrophages, Leishmania promastigotes differentiate into amastigote forms within the harsh environment of the phagolysosomal compartment. Here, we provide evidence for the importance of translational control during the Leishmania differentiation process. We find that exposure of promastigotes to a combined elevated temperature and acidic pH stress, a key signal triggering amastigote differentiation, leads to a marked decrease in global translation initiation, which is associated with eIF2α phosphorylation. Interestingly, we show that amastigotes adapted to grow in a cell-free medium exhibit lower levels of protein synthesis in comparison to promastigotes, suggesting that amastigotes have to enter a slow growth state to adapt to the stressful conditions encountered inside macrophages. Reconversion of amastigotes back to promastigote growth results in upregulation of global translation and a decrease in eIF2α phosphorylation. In addition, we show that while general translation is reduced during amastigote differentiation, translation of amastigote-specific transcripts such as A2 is preferentially upregulated. We find that A2 developmental gene regulation is triggered by temperature changes in the environment and that occurs mainly at the level of translation. Upon elevated temperature, the A2 transcript is stabilized through its association with polyribosomes leading to high levels of translation. When temperature decreases during amastigote to promastigote differentiation, the A2 transcript is not longer associated with translating polyribosomes and is being gradually degraded. Overall, these findings contribute to our better understanding of the adaptive responses of Leishmania to stress during its development and highlight the importance of translational control in promastigote to amastigote differentiation and vice-versa

    Activated platelets can deliver mRNA regulatory Ago2•microRNA complexes to endothelial cells via microparticles

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    Platelets play a crucial role in the maintenance of hemostasis, as well as in thrombosis. Upon activation, platelets release small membrane-bound microparticles (MPs) containing bioactive proteins and genetic materials from their parental cells that may be transferred to, and exert potent biological effects in, recipient cells of the circulatory system. Platelets have been shown to contain an abundant and diverse array of microRNAs, and platelet-derived MPs are the most abundant microvesicles in the circulation. Here we demonstrate that human platelets activated with thrombin preferentially release their miR-223 content in MPs. These MPs can be internalized by human umbilical vein endothelial cells (HUVEC), leading to the accumulation of platelet-derived miR-223. Platelet MPs contain functional Argonaute 2 (Ago2)•miR-223 complexes that are capable of regulating expression of a reporter gene in recipient HUVEC. Moreover, we demonstrate a role for platelet MP-derived miR-223 in the regulation of 2 endogenous endothelial genes, both at the messenger RNA and protein levels. Our results support a scenario by which platelet MPs may act as intercellular carriers of functional Ago2•microRNA complexes that may exert heterotypic regulation of gene expression in endothelial cells, and possibly other recipient cells of the circulatory system

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    ABSTRACT. Objective. Microparticles (MP) are small extracellular vesicles present in body fluids. MP originate from different cellular lineages, principally from platelets in blood, and may expose phosphatidylserine (PS). In systemic lupus erythematosus (SLE), MP harbor immunoglobulin G (IgG), thereby forming MP-containing immune complexes (mpIC). We aimed to verify an association between SLE disease activity, damage, and surrogate markers of atherosclerosis and MP harboring IgG, taking into account the platelet origin and PS exposure of MP. Methods. MP expressing surface IgG, platelet antigen (CD41+), and PS were quantified using flow cytometry in plasma of 191 women with SLE. Carotid ultrasounds (US) were available in 113 patients

    Regulation of general translation throughout the <i>Leishmania infantum</i> life cycle.

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    <p>Promastigote to amastigote differentiation (A). Polysome profile analysis of <i>L. infantum</i> promastigotes (Pro) and axenic amastigotes (Ama) grown in MAA 20 medium at 37°C and pH 5.5 for 4 days in average (1<sup>st</sup> passage). <i>L. infantum</i> differentiates into amastigote-like forms after ∼4 days of growth under these conditions as illustrated in (A). Amastigote to promastigote differentiation (B). Polysome profile analysis of <i>L. infantum</i> axenic amastigotes transferred from the MAA 20 medium at 37°C and pH 5.5 to a MAA medium at 25°C and pH 7.3 for up to 8 hours. Data displayed here represent one of three separate experiments. (C) The effect of <i>L. infantum</i> amastigote to promastigote differentiation on global protein synthesis as estimated by the incorporation levels of [<sup>35</sup>S]-Met into the <i>Leishmania</i> proteins (as described in <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0035085#pone-0035085-g002" target="_blank">Figure 2</a>). Results are the mean of four independent experiments.</p

    The effect of temperature and acidic pH stress on the <i>de novo</i> protein synthesis in <i>Leishmania</i>.

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    <p>(A) Levels of [<sup>35</sup>S]-methionine incorporation (as an indicative of general translation rates) in <i>L. infantum</i> promastigotes subjected from 1 to 8 hours to either an elevated temperature (37°C) stress (A) or to a combined temperature and low pH (pH 5.5) stress (C). Thirty minutes before protein sample collection, 1 µCi/ml [<sup>35</sup>S]-methionine protein labeling mix was added to the culture media lacking methionine. Protein synthesis was measured as the incorporated radioactivity by a scintillation counter and expressed as cpm. Results are the mean of a minimum of six independent experiments. (B) [<sup>35</sup>S]-Met-labeled proteins resolved on 10% SDS-PAGE. Cells grown at 25°C/pH 7.3 (no stress) or exposed to elevated temperature (37°C) (T°) only or to a combined temperature and acidic pH (pH 5.5) stress for 1, 4 and 8 hours were labelled with [<sup>35</sup>S]-Met for 30 min. An autoradiograph of the SDS-PAGE analysis is shown here. Examples of upregulated or downregulated proteins under stress are indicated by arrows. (D) Pulse-chase assay to assess the stability of <i>L. infantum</i> proteins under stress. <i>L. infantum</i> promastigotes were incubated in a methionine-deprived medium supplemented with [<sup>35</sup>S]-Met for 1 hour at 25°C and then transferred to a non-radioactive methionine-containing medium at 37°C and pH 5.5 and grown for 24 hours. Aliquots were taken at 1, 3, 5 and 24 hours and the radioactivity (in cpm) was measured by a scintillation counter. A decrease in cpm numbers corresponds to protein degradation under stress. Results are the mean of three independent experiments. Significant differences between the various conditions in (C) are indicated (* p<0.05 and **p<0.01) using one-way ANOVA followed by the Tukey-Kramer test.</p
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