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Publication : Expression patterns of Sema3A in developing amniote limbs: With reference to the diversification of peripheral nerve innervation.

First Author  Noguchi K Year  2017
Journal  Dev Growth Differ Volume  59
Issue  4 Pages  270-285
PubMed ID  28555754 Mgi Jnum  J:262818
Mgi Id  MGI:6164750 Doi  10.1111/dgd.12364
Citation  Noguchi K, et al. (2017) Expression patterns of Sema3A in developing amniote limbs: With reference to the diversification of peripheral nerve innervation. Dev Growth Differ 59(4):270-285
abstractText  Paired limbs were acquired in the ancestor of tetrapods and their morphology has been highly diversified in amniotes in relation to the adaptive radiation to the terrestrial environment. These morphological changes may have been induced by modification of the developmental program of the skeletal or muscular system. To complete limb modification, it is also important to change the neuronal framework, because the functions of the limbs rely on neural circuits that involve coordinated movement. Previous studies have shown that class 3 semaphorins (Sema3 semaphorins), which act as repulsive axonal guidance cues, play a crucial role in the formation of the peripheral nerves in mice. Here, we studied the expression pattern of Sema3A orthologues in embryos of developing amniotes, including mouse, chick, soft-shelled turtle, and ocelot gecko. Sema3A transcripts were expressed in restricted mesenchymal parts of the developing limb primordium in all animals studied, and developing spinal nerves appeared to extend through Sema3A-negative regions. These results suggest that a Sema3A-dependent guidance system plays a key role in neuronal circuit formation in amniote limbs. We also found that Sema3A partially overlapped with the distribution of cartilage precursor cells. Based on these results, we propose a model in which axon guidance and skeletogenesis are linked by Sema3A; such mechanisms may underlie functional neuron rearrangement during limb diversification.
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