6 results found
    1. Developmental Biology
    2. Neuroscience

    DCC regulates astroglial development essential for telencephalic morphogenesis and corpus callosum formation

    Laura Morcom, Ilan Gobius ... Linda J Richards
    Axon guidance molecules DCC and NTN1 regulate astroglial-mediated interhemispheric remodelling required for corpus callosum formation in humans and mice.
    1. Neuroscience

    DRAXIN regulates interhemispheric fissure remodelling to influence the extent of corpus callosum formation

    Laura Morcom, Timothy J Edwards ... Linda J Richards
    Incomplete interhemispheric fissure remodelling determines corpus callosum size in humans and BTBR N2 mice that carry a deletion in Draxin.
    1. Cancer Biology
    2. Neuroscience

    Autophagy linked FYVE (Alfy/WDFY3) is required for establishing neuronal connectivity in the mammalian brain

    Joanna M Dragich, Takaaki Kuwajima ... Ai Yamamoto
    Loss of function of the selective autophagy adaptor protein Alfy/Wdfy3 leads to profound wiring defects from the forebrain through to the spinal cord, highlighting the growing importance for macroautophagy in the developing brain.
    1. Developmental Biology
    2. Evolutionary Biology

    An ancestral apical brain region contributes to the central complex under the control of foxQ2 in the beetle Tribolium

    Bicheng He, Marita Buescher ... Gregor Bucher
    An ancestral apical brain center contributed to the evolution of the insect central complex requiring foxQ2, which is essential for the development of midline structures of the insect brain.
    1. Neuroscience

    TIR-1/SARM1 inhibits axon regeneration and promotes axon degeneration

    Victoria L Czech, Lauren C O'Connor ... Alexandra B Byrne
    TIR-1 regulates both repair and destruction on either side of an injury axon.
    1. Developmental Biology

    An oxygen-insensitive Hif-3α isoform inhibits Wnt signaling by destabilizing the nuclear β-catenin complex

    Peng Zhang, Yan Bai ... Cunming Duan
    Hif/Hif-3α has two distinct roles in cells: activating HRE-dependent gene expression and binding to β-catenin to destabilize the nuclear β-catenin complex.

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