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Involvement of BMP-4/msx-1 and FGF pathways in neural induction in the Xenopus embryo

A Ishimura1, R Maeda, M Takeda

  • 1Department of Biology, Faculty of Science, Niigata University, Japan.

Insights

Bone morphogenetic protein (BMP)-4 and Xmsx-1 regulate neural differentiation. Fibroblast growth factor (FGF) signaling is crucial for posterior neural tissue induction by organizer mesoderm in vivo.

Area of Science:

  • Developmental biology
  • Molecular biology
  • Genetics

Background:

  • The msx homeodomain protein is a transcription factor downstream of bone morphogenetic protein (BMP)-4 signaling.
  • Xmsx-1 plays a role in antagonizing dorsal signaling molecules like noggin and cerberus.
  • BMP-4 and Xmsx-1 are implicated in regulating neural tissue differentiation.

Purpose of the Study:

  • To investigate the role of Xmsx-1 and BMP-4 in neural tissue differentiation.
  • To elucidate the mechanisms underlying neural induction by organizer mesoderm.
  • To determine the involvement of fibroblast growth factor (FGF) signaling in neural development.

Main Methods:

  • In situ hybridization and reverse transcription-polymerase chain reaction (RT-PCR) assays.
  • Animal cap explant assays and loss-of-function studies using Xmsx-1/VP-16 fusion constructs.
  • Cell-lineage tracing and dominant-negative fibroblast growth factor (FGF) receptor (XFD) experiments.

Main Results:

  • Xmsx-1 and BMP-4 inhibited neural differentiation in animal cap explants but not in ectodermal explants with organizer mesoderm.
  • Neural cells differentiated from BMP-4-injected ectodermal cells expressed posterior neural markers.
  • Co-injection of BMP-4 RNA with dominant-negative FGF receptor (XFD) reduced neural marker expression, suggesting FGF involvement.

Conclusions:

  • BMP-4 and Xmsx-1 have context-dependent roles in neural differentiation.
  • Posterior neural tissue differentiation can occur independently of BMP signaling.
  • FGF-related molecules are likely involved in the induction of posterior neural tissue by organizer mesoderm.

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