Conditioning nerve crush accelerates cytoskeletal protein transport in sprouts that form after a subsequent crush

To examine the relationship between axonal outgrowth and the delivery of cytoskeletal proteins to the growing axon tip, outgrowth was accelerated by using a conditioning nerve crush. Because slow component b (SCb) of axonal transport is the most rapid vehicle for carrying cytoskeletal proteins to th...

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Veröffentlicht in:Journal of comparative neurology (1911) 1991-03, Vol.305 (1), p.139-147
Hauptverfasser: McQuarrie, Irvine G., Jacob, Jane M.
Format: Artikel
Sprache:eng
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Zusammenfassung:To examine the relationship between axonal outgrowth and the delivery of cytoskeletal proteins to the growing axon tip, outgrowth was accelerated by using a conditioning nerve crush. Because slow component b (SCb) of axonal transport is the most rapid vehicle for carrying cytoskeletal proteins to the axon tip, the rate of SCb was measured in conditioned vs. sham‐conditioned sprouts. In young Sprague‐Dawley rats, the conditioning crush was made to sciatic nerve branches at the knee; 14 days later, the test crush was made where the L4 and L5 spinal nerves join to form the sciatic nerve in the flank. Newly synthesized proteins were labeled in motor neurons by injecting 35S‐methionine into the lumbar spinal cord 7 days before the test crush. The wave of pulse‐labeled SCb proteins reached the crush by the time it was made and subsequently entered sprouts. The nerve was removed and sectioned for SDS‐PAGE and fluorography 4–12 days after the crush. Tubulins, neurofilament proteins, and representative “cytomatrix” proteins (actin, calmodulin, and putative microtubule‐associated proteins) were removed from gels for liquid scintillation counting. Labeled SCb proteins entered sprouts without first accumulating in parent axon stumps, presumably because sprouts begin to grow within hours after axotomy. The peak of SCb moved 11% faster in conditioned than in sham‐conditioned sprouts: 3.0 vs. 2.7 mm/d (p
ISSN:0021-9967
1096-9861
DOI:10.1002/cne.903050113