1. 14-3-3 protein augments the protein stability of phosphorylated spastin and promotes the recovery of spinal cord injury through its agonist intervention
    Qiuling Liu et al, 2024, eLife CrossRef
  2. Novel mutation of SPG4 gene in a Chinese family with hereditary spastic paraplegia: A case report
    Jie Wang et al, 2023, World Journal of Clinical Cases CrossRef
  3. Effects of DeSUMOylated Spastin on AMPA Receptor Surface Delivery and Synaptic Function Are Enhanced by Phosphorylating at Ser210
    Wenbin Zhang et al, 2024, Molecular Neurobiology CrossRef
  4. Rab3A interacts with spastin to regulate neurite outgrowth in hippocampal neurons
    Yuhao Yang et al, 2023, Biochemical and Biophysical Research Communications CrossRef
  5. Phosphorylation mutation impairs the promoting effect of spastin on neurite outgrowth without affecting its microtubule severing ability
    Yunlong Zhang et al, 2023, European Journal of Histochemistry CrossRef
  6. New cellular imaging‐based method to distinguish the SPG4 subtype of hereditary spastic paraplegia
    Francesca Sardina et al, 2023, European Journal of Neurology CrossRef
  7. Identification of c.1495C > T mutation in SPAST gene in a family of Han Chinese with hereditary spastic paraplegia
    Xiaohong Chen et al, 2023, Neuroscience Letters CrossRef
  8. A novel truncated variant in SPAST results in spastin accumulation and defects in microtubule dynamics
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  9. New mechanistic insights into hereditary spastic paraplegias
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  10. 14-3-3 protein augments the protein stability of phosphorylated spastin and promotes the recovery of spinal cord injury through its agonist intervention
    Qiuling Liu et al, 2024, eLife CrossRef