Literature DB >> 1901594

Changes in organization and axonal transport of cytoskeletal proteins during regeneration.

T Tashiro1, Y Komiya.   

Abstract

Changes in solubility and transport rate of cytoskeletal proteins during regeneration were studied in the motor fibers of the rat sciatic nerve. Nerves were injured by freezing at the midthigh level either 1-2 weeks before (experiment I) or 1 week after radioactive labeling of the spinal cord with L-[35S]methionine (experiment II). Labeled proteins in 6-mm consecutive segments of the nerve 2 weeks after labeling were analyzed following fractionation into soluble and insoluble populations with 1% Triton at 4 degrees C. When axonal transport of newly synthesized cytoskeleton was examined in the regenerating nerve in experiment I, a new faster component enriched in soluble tubulin and actin was observed that was not present in the control nerve. The rate of the slower main component containing most of the insoluble tubulin and actin together with neurofilament proteins was not affected. A smaller but significant peak of radioactivity enriched in soluble tubulin and actin was also detected ahead of the main peak when the response of the preexisting cytoskeleton was examined in experiment II. It is thus concluded that during regeneration changes in the organization take place in both the newly synthesized and the preexisting axonal cytoskeleton, resulting in a selective acceleration in rate of transport of soluble tubulin and actin.

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Year:  1991        PMID: 1901594     DOI: 10.1111/j.1471-4159.1991.tb02051.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  6 in total

Review 1.  Organization and slow axonal transport of cytoskeletal proteins under normal and regenerating conditions.

Authors:  T Tashiro; Y Komiya
Journal:  Mol Neurobiol       Date:  1992 Summer-Fall       Impact factor: 5.590

Review 2.  Changes in cytoskeletal protein synthesis following axon injury and during axon regeneration.

Authors:  M A Bisby; W Tetzlaff
Journal:  Mol Neurobiol       Date:  1992 Summer-Fall       Impact factor: 5.590

3.  The cells of the dorsal iris involved in lens regeneration are myoepithelial cells whose cytoskeleton changes during cell type conversion.

Authors:  Y Yang; S E Zalik
Journal:  Anat Embryol (Berl)       Date:  1994-06

4.  Changes in microtubule stability and density in myelin-deficient shiverer mouse CNS axons.

Authors:  L L Kirkpatrick; A S Witt; H R Payne; H D Shine; S T Brady
Journal:  J Neurosci       Date:  2001-04-01       Impact factor: 6.167

5.  CNS regeneration: only on one condition.

Authors:  Jerry Silver
Journal:  Curr Biol       Date:  2009-06-09       Impact factor: 10.834

6.  Axonal transport of class II and III beta-tubulin: evidence that the slow component wave represents the movement of only a small fraction of the tubulin in mature motor axons.

Authors:  P N Hoffman; M A Lopata; D F Watson; R F Luduena
Journal:  J Cell Biol       Date:  1992-11       Impact factor: 10.539

  6 in total

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