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    1. Cell Biology
    2. Human Biology and Medicine

    Cancer: A new role for an old enemy

    Richard M Monaghan, Alan J Whitmarsh
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    1. Cell Biology

    Cell Biology: A new regulator of caveolae signalling

    Alan J Whitmarsh
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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

    Endoplasmic Reticulum: Keeping in shape

    Craig Blackstone, William A Prinz
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    1. Cell Biology

    Ragulator and GATOR1 complexes promote fission yeast growth by attenuating TOR complex 1 through Rag GTPases

    Kim Hou Chia et al.
    The Rag-family GTPases, known activators of TOR complex 1 (TORC1), also function as attenuator that prevents deregulated hyperactivation of TORC1 signaling.
    1. Neuroscience

    Central Dicer-miR-103/107 controls developmental switch of POMC progenitors into NPY neurons and impacts glucose homeostasis

    Sophie Croizier et al.
    Loss miRNA maturation in proopiomelanocortin (POMC) neurons causes metabolic dysregulation and favors the differentiation of Pomc progenitors into neuropeptide Y neurons, a developmental process that appears to specifically involve miR-103/107.
    1. Biochemistry and Chemical Biology
    2. Cell Biology

    Temporal profiling of redox-dependent heterogeneity in single cells

    Meytal Radzinski et al.
    Analysis of aging yeast cells using the in-vivo roGFP2-based probe reveals redox-dependent heterogeneity, reflected in a bi-modal distribution of the oxidation status, differential growth and replication, as well as distinct proteomic and transcriptomic profiles.
    1. Neuroscience
    2. Structural Biology and Molecular Biophysics

    PIP2 depletion promotes TRPV4 channel activity in mouse brain capillary endothelial cells

    Osama F Harraz et al.
    TRPV4 channels in brain capillaries are suppressed by the phosphoinositide PIP2 and activated by receptor agonists implicated in neurovascular coupling.
    1. Developmental Biology
    2. Stem Cells and Regenerative Medicine

    Pdgfra marks a cellular lineage with distinct contributions to myofibroblasts in lung maturation and injury response

    Rongbo Li et al.
    Lineage tracing using a knockin Pdgfra-rtTA tool indicates distinct contributions of this cell lineage to myofibroblasts in normal development, fibrosis and bronchopulmonary dysplasia models.