Literature DB >> 2463048

Differential turnover of tubulin and neurofilament proteins in central nervous system neuron terminals.

J A Garner1.   

Abstract

The transport of tubulin and neurofilament protein subunits from the preterminal axons of guinea pig retinal ganglion cells into their presynaptic terminals in the superior colliculus was examined. Newly synthesized tubulin and neurofilament proteins were radiolabeled with tritiated amino acids in the cell bodies and were allowed to be axonally transported through the optic axons and into the terminals in the superior colliculi. Superior colliculi were harvested at appropriate times, synaptosomes were prepared, and radiolabeled proteins were examined by gel electrophoresis and fluorography. Proteins in the radiolabeled synaptosomes were compared with those in the portion of the optic tract immediately proximal to the superior colliculus. Tubulin subunits entered the terminals by 100 days after intraocular labeling, and at least one isoform of tubulin appeared to persist as long as 400 days. Neurofilament proteins, despite the fact that they are axonally transported and delivered to the terminals in concert with the tubulin subunits, disappear rapidly upon entry into the terminals themselves.

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Year:  1988        PMID: 2463048     DOI: 10.1016/0006-8993(88)90473-8

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  7 in total

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6.  In vivo turnover of tau and APP metabolites in the brains of wild-type and Tg2576 mice: greater stability of sAPP in the beta-amyloid depositing mice.

Authors:  Jose Morales-Corraliza; Matthew J Mazzella; Jason D Berger; Nicole S Diaz; Jennifer H K Choi; Efrat Levy; Yasuji Matsuoka; Emmanuel Planel; Paul M Mathews
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7.  Slow axonal transport mechanisms move neurofilaments relentlessly in mouse optic axons.

Authors:  R J Lasek; P Paggi; M J Katz
Journal:  J Cell Biol       Date:  1992-05       Impact factor: 10.539

  7 in total

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