Stathmin-2 enhances motor axon regeneration after injury independent of its binding to tubulin.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40392845.
- Also identified by DOI 10.1073/pnas.2502294122 and PMC identifier 12130871.
- Licence recorded as CC BY-NC-ND.
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Abstract
Stathmin-2 (also known as <i>SCG10</i>) is encoded by the <i>STMN2</i> gene, whose mRNA is one of the most abundantly expressed in human motor neurons. In almost all instances of ALS and other TDP-43 proteinopathies, stathmin-2 encoding mRNAs are cryptically spliced and polyadenylated in motor neurons, a pathogenic consequence of nuclear loss of function of the RNA binding protein TDP-43. While stathmin-2 has been shown to enhance regeneration after axonal injury to axons of cultured motor neurons, here, we show that after crush injury within the adult murine nervous system of wild-type or stathmin-2-null mice, the presence of stathmin-2 reduces axonal and neuromuscular junction degeneration and stimulates reinnervation and functional recovery. Mechanistically, although stathmin-2 has been proposed to function through direct binding to α/β tubulin heterodimers and correspondingly to affect microtubule assembly and dynamics, stathmin-2's role in axon regeneration after axotomy is shown to be independent of its tubulin binding abilities.
Medical subject headings
- Stathmin
- Axons
- Motor Neurons
- Tubulin
- Nerve Regeneration