4.7 Article

Schwann cells promote synaptogenesis at the neuromuscular junction via transforming growth factor-β1

Journal

JOURNAL OF NEUROSCIENCE
Volume 28, Issue 39, Pages 9599-9609

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.2589-08.2008

Keywords

agrin; glia; neuromuscular junctions; Schwann cell; synaptogenesis; TGF-beta 1

Categories

Funding

  1. National Institutes of Health [NS17954]

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Recent studies suggest that glial cells actively participate in the formation, function, maintenance, and repair of the chemical synapse. However, the molecular mechanisms of glia-synapse interactions are largely unknown. We have shown previously that Schwann cell-conditioned medium (SC-CM) promotes synaptogenesis in Xenopus nerve-muscle cocultures. The present study aimed to identify the synaptogenic molecules in SC-CM. Combining biochemical approaches and in vitro bioassays, we found that SC-CM contains transforming growth factor (TGF)-beta 1, which is expressed in Schwann cells both in vivo and in vitro. Similar to SC-CM, TGF-beta 1 doubled the size of acetylcholine receptor (AChR) clusters at nerve-muscle contacts and significantly increased the percentage of nerve-muscle contacts that show AChR clusters to similar to 60%, compared with similar to 20% seen in control cultures. The synaptogenic effects of SC-CM were abolished if SC-CM was immunodepleted of TGF-beta 1 or if the latency-associated protein or a TGF-beta 1 receptor kinase inhibitor was added to block the bioactivity of TGF-beta 1. Similar to frog SC-CM, mammalian SC-CM also showed synaptogenic effects, which were prevented by immunodepletion of TGF-beta 1. TGF-beta 1 upregulated agrin expression in spinal neurons, which could explain the increase in AChR clusters in cultures treated with SC-CM. These results suggest that Schwann cells express TGF-beta 1, which is both sufficient and necessary for mediating the synapse-promoting effects of Schwann cells at the developing neuromuscular junction. Schwann cell-derived TGF-beta 1 thus joins other astrocyte-derived synaptogenic factors in further strengthening the emerging concept that glial cells contribute to synaptogenesis in both the PNS and the CNS.

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