Chemotactic Role of Neurotropin 3 in the Embryonic Testis That Facilitates Male Sex Determination1
Open Access
- 1 June 2003
- journal article
- Published by Oxford University Press (OUP) in Biology of Reproduction
- Vol. 68 (6), 2033-2037
- https://doi.org/10.1095/biolreprod.102.012617
Abstract
The first morphological event after initiation of male sex determination is seminiferous cord formation in the embryonic testis. Cord formation requires migration of pre-peritubular myoid cells from the adjacent mesonephros. The embryonic Sertoli cells are the first testicular cells to differentiate and have been shown to express neurotropin-3 (NT3), which can act on high-affinity trkC receptors expressed on migrating mesonephros cells. NT3 expression is elevated in the embryonic testis during the time of seminiferous cord formation. A trkC receptor tyrophostin inhibitor, AG879, was found to inhibit seminiferous cord formation and mesonephros cell migration. Beads containing NT3 were found to directly promote mesonephros cell migration into the gonad. Beads containing other growth factors such as epidermal growth factor (EGF) did not influence cell migration. At male sex determination the SRY gene promotes testis development and the expression of downstream sex differentiation genes such as SOX-9. Inhibition of NT3 actions caused a reduction in the expression of SOX-9. Combined observations suggest that when male sex determination is initiated, the developing Sertoli cells express NT3 as a chemotactic agent for migrating mesonephros cells, which are essential to promote embryonic testis cord formation and influence downstream male sex differentiation.Keywords
This publication has 23 references indexed in Scilit:
- Regulation of male sexual development by Sry and Sox9Journal of Experimental Zoology, 2001
- Defective Mesonephric Cell Migration Is Associated with Abnormal Testis Cord Development in C57BL/6J XYMus domesticus MiceDevelopmental Biology, 2000
- The battle of the sexesMechanisms of Development, 2000
- Migration of mesonephric cells into the mammalian gonad depends on SryMechanisms of Development, 1999
- Male-specific cell migration into the developing gonadCurrent Biology, 1997
- Sox9 expression during gonadal development implies a conserved role for the gene in testis differentiation in mammals and birdsNature Genetics, 1996
- Mouse Dax1 expression is consistent with a role in sex determination as well as in adrenal and hypothalamus functionNature Genetics, 1996
- A cell-specific nuclear receptor is essential for adrenal and gonadal development and sexual differentiationCell, 1994
- Sertoli cells and testicular differentiation in the rat fetusJournal of Electron Microscopy Technique, 1991
- Development of the mammalian gonad: The fate of the supporting cell lineageBioEssays, 1991