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Meghan Thomas

Publications and source records attributed to Meghan Thomas.

2 recordsLinked to original sources

A multiphasic role for Pax7 in tectal development.

The optic tectum differentiates from the mesencephalic alar plate and matures into a characteristically laminated structure. Evidence presented here suggests a role for Pax7 in all stages of development of tectal architecture, from regionalisation to specification of neurons and tectal topography. Analysis of Pax7 expression profiles over a range of developmental stages (E2-E12) suggests a biphasic role for Pax7: initially Pax7 expressing cells in the proliferative neuroepithelial layer establish tectal polarity whereas later Pax7 is expressed in neurons of the retino-recipient precursor stratum griseum et fibrosum superficiale (sgfs) laminae where graded levels may establish tectal topography. Furthermore, co-localisation immunofluorescence confirmed that Pax7 is initially expressed in the majority of proliferative neuroepithelial cells and later in a subset of neurons of the sgfs laminae.

Age Factors↗

Expression profiles suggest a role for Pax7 in the establishment of tectal polarity and map refinement.

The role for Pax7 in establishing tectal polarity and map refinement was authenticated by gene expression studies in vivo and in vitro. Throughout development (stages E2-E12 were examined) a rostral(low)-caudal(high) and dorsal(high)-ventral(low) Pax7 expression gradient was detected immunohistochemically in the chick optic tectum, indicating a role for Pax7 in establishing tectal polarity. Chick retino-recipient tectal cells positive for Pax7 also co-expressed ephrin-A2, a molecule involved in the establishment and refinement of the retinotopic map. In vitro, PAX7 up-regulated ephrin-A2 when transfected into undifferentiated P19 cells; cells became negative for both Pax7 and ephrin-A2 protein following treatment with anti-sense oligonucleotides. These results suggest that in addition to being involved in the early establishment of tectal polarity, Pax7 plays a later role in retino-tectal map formation and refinement.

Animals↗