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    1. Ecology
    2. Plant Biology

    The Natural History of Model Organisms: Planting molecular functions in an ecological context with Arabidopsis thaliana

    Ute Krämer
    Research in molecular ecology and evolution is increasingly utilizing the model plant Arabidopsis thaliana, placing a spotlight on its natural history.
    1. Structural Biology and Molecular Biophysics
    2. Cell Biology

    Mitosis: Checkpoint proteins come under scrutiny

    Maria Mora-Santos, Jonathan BA Millar
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    1. Biochemistry and Chemical Biology
    2. Cell Biology

    Metabolism: Warburg’s vision

    James B Hurley
    Genetic tools help to dissect the relationship between aerobic glycolysis and anabolic metabolism in the retinas of mice.
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    1. Structural Biology and Molecular Biophysics
    2. Immunology and Inflammation

    Membrane Phase Separation: Localizing order to boost signaling

    Štefan Bálint, Michael L Dustin
    B-cell receptors form ordered clusters to recruit kinases and exclude phosphatases.
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    1. Cell Biology
    2. Neuroscience

    Neuroscience: Endocytosis gets in tune with action potential bursts

    Melissa A Herman, Christian Rosenmund
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    1. Immunology and Inflammation
    2. Microbiology and Infectious Disease

    IRF4 haploinsufficiency in a family with Whipple’s disease

    Antoine Guérin et al.
    Autosomal dominant IRF4 deficiency is the first genetic etiology of Whipple's disease, a very rare chronic condition following a rather common infection by Tropheryma whipplei.
    1. Biochemistry and Chemical Biology
    2. Developmental Biology

    O-GlcNAc on NOTCH1 EGF repeats regulates ligand-induced Notch signaling and vascular development in mammals

    Shogo Sawaguchi et al.
    The transfer of O-GlcNAc by EOGT to specific EGF repeats of NOTCH1 promotes DLL4 binding, Notch signaling, and retinal vascular development.
    1. Cell Biology

    The fibronectin synergy site re-enforces cell adhesion and mediates a crosstalk between integrin classes

    Maria Benito-Jardón et al.
    The fibronectin synergy site is only required in vivo when forces exceed or αvβ3 integrin levels fall below certain thresholds.