RhoA in postnatal spinal motoneuron is essential for peripheral myelination
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ABSTRACT: Peripheral myelination requires precise axon-glia communication, yet the neuronal intrinsic machinery that governs the release of axonal signals remains incompletely understood. Here, we discover that RhoA, a classic cytoskeletal regulator, is highly expressed in postnatal spinal motoneurons and unexpectedly governs this axon-glia communication. RhoA conditional knockout in postnatal motoneurons causes profound peripheral hypomyelination without affecting neuronal survival, dendrites, or axonal caliber. Mechanistically, RhoA deficiency in postnatal spinal motoneurons attenuates ROCK2/p-Erk/SP1/BACE1 signaling and NRG1-III secretion, then disrupts Schwann cell’s differentiation, lipid biosynthesis, and myelin formation. Together, this study reveals a novel, non-cell-autonomous role for RhoA, and provides new insights into the complexity of neuronal control over peripheral myelination.
ORGANISM(S): Mus musculus
PROVIDER: GSE339005 | GEO | 2026/07/30
REPOSITORIES: GEO
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