6 results found
    1. Neuroscience

    Relaxation of synaptic inhibitory events as a compensatory mechanism in fetal SOD spinal motor networks

    Pascal Branchereau et al.
    Electrophysiological and simulation approaches show that a chloride-related longer relaxation of the inhibitory synaptic events partially compensates the early defect in the chloride homeostasis detected in fetal SOD spinal motoneurons.
    1. Cell Biology

    Nuclear export of misfolded SOD1 mediated by a normally buried NES-like sequence reduces proteotoxicity in the nucleus

    Yongwang Zhong et al.
    Cellular and genetic approaches reveal that exposure of a normally buried nuclear export signal (NES)-like sequence mediates export of ALS-linked mutant and misfolded wild-type SOD1 to the cytoplasm by CRM1.
    1. Cell Biology

    Single cell analysis reveals multiple requirements for zinc in the mammalian cell cycle

    Maria N Lo et al.
    Zinc affects the proliferation-quiescence cell fate decision of mammalian cells, demonstrating that micronutrients can regulate the cell cycle.
    1. Cell Biology
    2. Human Biology and Medicine

    Transcriptional activator TAp63 is upregulated in muscular atrophy during ALS and induces the pro-atrophic ubiquitin ligase Trim63

    Yannick von Grabowiecki et al.
    Atrophic muscles of patients and animal models developing amyotrophic lateral sclerosis show an upregulation of TAp63 that stimulates the expression of a pro-atrophic ubiquitin ligase.
    1. Structural Biology and Molecular Biophysics

    Structural Biology: NMR illuminates the pathways to ALS

    Tao Xie, Charalampos G Kalodimos
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    1. Structural Biology and Molecular Biophysics

    Thermal fluctuations of immature SOD1 lead to separate folding and misfolding pathways

    Ashok Sekhar et al.
    Solution NMR spectroscopy reveals the energy landscape of immature Cu, Zn-superoxide dismutase and leads to atomic resolution structural models of transiently populated non-native oligomers.

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