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    1. Cancer Biology
    2. Cell Biology

    GPCR signaling inhibits mTORC1 via PKA phosphorylation of Raptor

    Jenna L Jewell et al.
    Protein kinase A (PKA) phosphorylates Raptor and inhibits mammalian target of rapamycin complex 1 (mTORC1) activity.
    1. Structural Biology and Molecular Biophysics

    Ion Channels: Solving a specificity mystery

    Sanduo Zheng, Andrew C Kruse
    Differences in the kinetics of G protein activation can explain why only some receptors can activate potassium ion channels called GIRKs.
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    1. Biochemistry and Chemical Biology
    2. Cell Biology

    Circadian Rhythms: Feeding time

    Hugh D Piggins , David A Bechtold
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    1. Cancer Biology

    Cancer Risk: Why do women with melanoma do better than men?

    Keiran SM Smalley
    Harnessing female sex hormones may improve how all patients with melanoma respond to treatment.
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    1. Neuroscience

    Mechanotransduction: Two views of the same stimulus

    Wayne A Johnson
    Signals from two different membrane proteins are combined to modulate how strongly sensory neurons respond to mechanical force.
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    1. Structural Biology and Molecular Biophysics

    Crystal structure of dopamine receptor D4 bound to the subtype selective ligand, L745870

    Ye Zhou et al.
    The structure of receptor-ligand complex reveals the ligand binding selectivity among different dopamine receptor subtypes and also shows how this ligand class inhibits receptor activity.
    1. Cell Biology

    Golgi localized β1-adrenergic receptors stimulate Golgi PI4P hydrolysis by PLCε to regulate cardiac hypertrophy

    Craig A Nash et al.
    β-adrenergic receptors at the Golgi apparatus activate a local signaling pathway, not accessed by cell surface receptors, to drive cardiac hypertrophy and could represent a target for heart failure therapy.
    1. Structural Biology and Molecular Biophysics

    Molecular basis of signaling specificity between GIRK channels and GPCRs

    Kouki K Touhara, Roderick MacKinnon
    A single kinetic step in the G protein activation cycle determines whether a G protein-coupled receptor activates G protein-gated K+ channels or not.
    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. Neuroscience

    Orphan receptor GPR158 controls stress-induced depression

    Laurie P Sutton et al.
    The orphan receptor GPR158 is highly regulated by stress exposure and acts on key neuronal signaling pathways in the prefrontal cortex to control depressive-like behaviors.