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Lentiviral-mediated knock-down of GD3 synthase protects against MPTP-induced motor deficits and neurodegeneration.
Dhanushkodi, Anandh; Xue, Yi; Roguski, Emily E; Ding, Yun; Matta, Shannon G; Heck, Detlef; Fan, Guo-Huang; McDonald, Michael P.
Affiliation
  • Dhanushkodi A; Department of Neurology, University of Tennessee Health Science Center Memphis, TN 38163, United States.
  • Xue Y; Department of Neurology, University of Tennessee Health Science Center Memphis, TN 38163, United States.
  • Roguski EE; Department of Pharmacology, University of Tennessee Health Science Center, Memphis, TN 38163, United States.
  • Ding Y; Department of Pharmacology & Toxicology, Virginia Commonwealth University, Richmond, VA 23284, United States.
  • Matta SG; Department of Pharmacology, University of Tennessee Health Science Center, Memphis, TN 38163, United States.
  • Heck D; Department of Anatomy & Neurobiology, University of Tennessee Health Science Center Memphis, TN 38163, United States.
  • Fan GH; Department of Pharmacology & Toxicology, Virginia Commonwealth University, Richmond, VA 23284, United States.
  • McDonald MP; Department of Neurology, University of Tennessee Health Science Center Memphis, TN 38163, United States; Department of Anatomy & Neurobiology, University of Tennessee Health Science Center Memphis, TN 38163, United States. Electronic address: mike@tennessee.edu.
Neurosci Lett ; 692: 53-63, 2019 01 23.
Article de En | MEDLINE | ID: mdl-30391320
ABSTRACT
Converging evidence demonstrates an important role for gangliosides in brain function and neurodegenerative diseases. Exogenous GM1 is broadly neuroprotective, including in rodent, feline, and primate models of Parkinson's disease, and has shown positive effects in clinical trials. We and others have shown that inhibition of the ganglioside biosynthetic enzyme GD3 synthase (GD3S) increases endogenous levels GM1 ganglioside. We recently reported that targeted deletion of St8sia1, the gene that codes for GD3S, prevents motor impairments and significantly attenuates neurodegeneration induced by 1-methy-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP). The current study investigated the effects of GD3S inhibition on the neurotoxicity and parkinsonism induced by MPTP. Mice were injected intrastriatally with a lentiviral-vector-mediated shRNA construct targeting GD3S (shGD3S) or a scrambled-sequence control (scrRNA). An MPTP regimen of 18 mg/kg x 5 days reduced tyrosine-hydroxylase-positive neurons in the substantia nigra pars compacta of scrRNA-treated mice by nearly two-thirds. In mice treated with shGD3S the MPTP-induced lesion was approximately half that size. MPTP induced bradykinesia and deficits in fine motor skills in mice treated with scrRNA. These deficits were absent in shGD3S-treated mice. These results suggest that inhibition of GD3S protects against the nigrostriatal damage, bradykinesia, and fine-motor-skill deficits associated with MPTP administration.
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Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Sialyltransferases / Syndromes parkinsoniens / Activité motrice Limites: Animals Langue: En Journal: Neurosci Lett Année: 2019 Type de document: Article Pays d'affiliation: États-Unis d'Amérique

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Sialyltransferases / Syndromes parkinsoniens / Activité motrice Limites: Animals Langue: En Journal: Neurosci Lett Année: 2019 Type de document: Article Pays d'affiliation: États-Unis d'Amérique
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