4.4 Article

Activin signaling functions upstream of Gbb to regulate synaptic growth at the Drosophila neuromuscular junction

Journal

DEVELOPMENTAL BIOLOGY
Volume 342, Issue 2, Pages 121-133

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ydbio.2010.03.012

Keywords

Drosophila; Activin; Dawdle; Baboon; dSmad2; BMP; Neuromuscular junction; Synaptic development; Futsch; TGF-beta

Funding

  1. [NIH-GM-55442]
  2. [NSF-IBN-0131736]
  3. [MOD-FY2-07-504]

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Activins are members of the TGF-beta superfamily of secreted growth factors that control a diverse array of processes in vertebrates including endocrine function, cell proliferation, differentiation, immune response and wound repair. In Drosophila, the Activin ligand Dawdle (Daw) has been shown to regulate several aspects of neuronal development such as embryonic axonal pathfinding, neuroblast proliferation in the larval brain and growth cone motility in the visual system. Here we identify a novel role for Activin signaling in regulating synaptic growth at the larval neuromuscular junction (NMJ). Mutants for Daw, the Activin type I receptor Baboon (Babo), and the signal transducer dSmad2, display reduced NMJ size suggesting that Daw utilizes a canonical Activin signal-transduction pathway in this context. Additionally, loss of Daw/Babo activity affects microtubule stability, axonal transport and distribution of Futsch, the Drosophila microtubule associated protein 1B (MAP1B) homolog. We find that Babo signaling is required postsynaptically in the muscle, in contrast to the well-characterized retrograde BMP/Gbb signal that is required for synaptic growth and function in presynaptic cells. Finally, we show that the Daw/Babo pathway acts upstream of gbb, and is involved in maintenance of muscle gbb expression, suggesting that Activins regulate NMJ growth by modulating BMP activity through transcriptional regulation of ligand expression. (C) 2010 Elsevier Inc. All rights reserved.

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