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Research on the immunogenic molecules of Toxoplasma is a key priority in the development of protective vaccines against the parasite. In the present study, we analyzed the profile of immunorecognized proteins from the Toxoplasma cytoskeleton using sera from patients with both acute and chronic toxoplasmosis. The immunorecognized spots were analyzed by mass spectrometry and characterized by bioinformatic methods, leading to the identification of a total of 313 proteins. Sixty-three antigenic proteins were recognized by IgM antibodies and 250 antigenic proteins were recognized by IgG antibodies. About 10 proteins specifically reported as cytoskeletal proteins were identified with the IgG antibodies while 9 cytoskeletal proteins were detected by IgM antibodies. Bioinformatic analyses of the identified antigenic proteins were performed to determine their immunogenic potential, including the number of epitopes recognized by B lymphocytes, cytotoxic T lymphocytes (CD8+), and helper T lymphocytes (CD4+) receptors. This analysis enabled the selection of highly immunogenic proteins, which could serve as potential candidates for the design of a future vaccine against toxoplasmosis. SIGNIFICANCE: The study of immunogenic molecules from Toxoplasma gondii is a key priority in the search for protective vaccines. Despite partial success in previous strategies, identifying immunogenic proteins from the T. gondii cytoskeleton using immune-proteomics and bioinformatic approaches is crucial for vaccine development. This study provides valuable data that could serve as the foundation for designing novel immunogenic and immunoprotective molecules against toxoplasmosis.
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http://dx.doi.org/10.1016/j.jprot.2025.105454 | DOI Listing |
J Agric Food Chem
September 2025
Laboratory of Food Proteins and Colloids, School of Food Science and Engineering, Guangdong Province Key Laboratory for Green Processing of Natural Products and Product Safety, South China University of Technology, Guangzhou 510640, China.
Soy protein remains a key component of plant-based food development, but its application is challenged by inherent allergenicity. Previous work identified that native amyloid-like protein aggregates in soy 7S globulin that resist gastrointestinal digestion and exhibit pronounced antigenicity. Herein, we demonstrate that protein deamidation significantly enhances proteolysis under an infant gastrointestinal digestion model, leading to ∼80 and 50% reductions in IgG- and IgE-binding capacities, respectively.
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September 2025
Department of Pediatrics, University of California San Diego, La Jolla, CA, USA.
Cell type-specific regulatory programs that drive type 1 diabetes (T1D) in the pancreas are poorly understood. Here, we performed single-nucleus multiomics and spatial transcriptomics in up to 32 nondiabetic (ND), autoantibody-positive (AAB), and T1D pancreas donors. Genomic profiles from 853,005 cells mapped to 12 pancreatic cell types, including multiple exocrine subtypes.
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September 2025
Department of Genitourinary Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
(phosphatidylserine synthase 1) encodes an enzyme that facilitates production of phosphatidylserine (PS), which mediates a global immunosuppressive signal. Here, based on in vivo CRISPR screen, we identified PTDSS1 as a target to improve anti-PD-1 therapy. Depletion of in tumor cells increased expression of interferon-γ (IFN-γ)-regulated genes, including , , , and , even in the absence of IFN-γ stimulation in vitro.
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September 2025
The Jackson Laboratory for Genomic Medicine, Farmington, CT 06032, USA.
Influenza A viruses remain a global health threat, yet no universal antibody therapy exists. Clinical programs have centered on neutralizing mAbs, only to be thwarted by strain specificity and rapid viral escape. We instead engineered three non-neutralizing IgG2a mAbs that target distinct, overlapping epitopes within the conserved N terminus of the M2 ectodomain (M2e).
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September 2025
Peking University People's Hospital, Peking University Institute of Hematology, National Clinical Research Center for Hematologic Disease, Beijing Key Laboratory of Hematopoietic Stem Cell Transplantation, Peking University, Beijing, China.
Regulatory T cells are essential for immune homeostasis. While CD4 T cells are well characterized, CD8 T cells remain less understood and are primarily observed in pathological or experimental contexts. Here, we identify a naturally occurring CD8 regulatory precursor T cell at the steady state, defined by a CD8HLA-DRCD27 phenotype and a transcriptome resembling CD4 T cells.
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