Showing 21 - 40 results of 83 for search '"Proteomics"', query time: 0.06s Refine Results
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    Linking obesity-associated genotype to child language development: the role of early-life neurology-related proteomics and brain myelinationResearch in context by Jian Huang, Jinyi Che, Michelle Z.L. Kee, Ai Peng Tan, Evelyn C. Law, Patricia Pelufo Silveira, Irina Pokhvisneva, Sachin Patel, Keith M. Godfrey, Lourdes Mary Daniel, Kok Hian Tan, Yap Seng Chong, Shiao-Yng Chan, Johan G. Eriksson, Dennis Wang, Jonathan Yinhao Huang

    Published 2025-03-01
    “…Interpretation: This study demonstrates the potential of examining early-life proteomics in conjunction with deep genotyping and phenotyping and provides biological insights into the shared genomic links between obesity and language development. …”
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    Quantitative proteomics and targeted metabolomics reveal the role of Cassia siamea L. extract in the response to high-fat diet-induced obesity in Drosophila by Ananya Dechakhamphu, Nattapong Wongchum, Theeraphan Chumroenphat, Alongklod Tanomtong, Sirithon Siriamornpun

    Published 2025-02-01
    “…Moreover, this study investigated the effects of the extract combined with a high-fat diet on amino acid metabolism and proteomic profiles to clarify its mechanism of action. …”
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    The ubiquitin-conjugating enzyme UBE2D maintains a youthful proteome and ensures protein quality control during aging by sustaining proteasome activity. by Liam C Hunt, Michelle Curley, Kudzai Nyamkondiwa, Anna Stephan, Jianqin Jiao, Kanisha Kavdia, Vishwajeeth R Pagala, Junmin Peng, Fabio Demontis

    Published 2025-01-01
    “…Interestingly, UBE2D/eff knockdown in young age reproduces part of the proteomic changes that normally occur in old muscles, suggesting that the decrease in UBE2D/eff protein levels that occurs with aging contributes to reshaping the composition of the muscle proteome. …”
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    Inhibition of tumour necrosis factor alpha by Etanercept attenuates Shiga toxin-induced brain pathology by Robin Christ, Devon Siemes, Shuo Zhao, Lars Widera, Philippa Spangenberg, Julia Lill, Stephanie Thiebes, Jenny Bottek, Lars Borgards, Andreia G. Pinho, Nuno A. Silva, Susana Monteiro, Selina K. Jorch, Matthias Gunzer, Bente Siebels, Hannah Voss, Hartmut Schlüter, Olga Shevchuk, Jianxu Chen, Daniel R. Engel

    Published 2025-02-01
    “…In this study, we investigated the role of tumour necrosis factor alpha (TNF-α) for microglial activation and brain pathology using a preclinical mouse model of EHEC infection. LC–MS/MS proteomics of mice injected with a combination of Shiga toxin (Stx) and lipopolysaccharide (LPS) revealed extensive alterations of the brain proteome, in particular enrichment of pathways involved in complement activation and coagulation cascades. …”
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    Anaerobic metabolism promotes breast cancer survival via Histone-3 Lysine-18 lactylation mediating PPARD axis by Ying Xu, Weiwei Meng, Yingqi Dai, Lin Xu, Ning Ding, Jinqing Zhang, Xuewei Zhuang

    Published 2025-02-01
    “…Additionally, we confirmed that HDAC2 and HDAC3 act as “erasers” for H3 lysine lactylation. During the proteomics analysis, AKT-phosphorylation in the aerobic respiration inhibitor group exhibited an apparent disparity and activity. …”
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    Wilson and Walker's Principles and Techniques of Biochemistry and Molecular Biology /

    Published 2018
    Table of Contents: “…Biochemical and molecular biological methods in life sciences studies -- Basic principles -- Cell culture techniques -- Recombinant DNA techniques and molecular cloning -- Preparative protein biochemistry -- Electrophoretic techniques -- Immunochemical techniques -- Flow cytometry -- Radioisotope techniques -- Principles of clinical biochemistry -- Microscopy -- Centrifugation and ultracentrifugation -- Spectroscopic techniques -- Basic techniques probing molecular structure and interactions -- Mass spectrometric techniques -- Fundamentals of bioinformatics -- Fundamentals of chemoinformatics -- The python programming language -- Data analysis -- Fundamentals of genome sequencing and annotation -- Fundamentals of proteomics -- Fundamentals of metabolomics -- Enzymes and receptors -- Drug discovery and development.…”
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