Characterization of lacZ-expressing cells in the gut of embryonic and adult DβH-nlacZ mice
✍ Scribed by Ashley L. Stewart; Richard B. Anderson; Heather M. Young
- Book ID
- 102806543
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 757 KB
- Volume
- 464
- Category
- Article
- ISSN
- 0021-9967
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
In mice that express lacZ under the control of a human dopamine β‐hydroxylase gene promoter (D__β__H‐nlacZ mice), the nuclei of enteric neurons express the transgene, as shown by the presence of β‐galactosidase (β‐gal) staining (Mercer et al. [1991] Neuron 7:703–716). The transgene is also expressed by neural crest‐derived cells in the developing gut before their differentiation into neurons or glial cells (Kapur et al. [1992] Development 116:167–175). However, the cell types expressing the D__β__H‐nlacZ transgene within the developing and adult gut have not been fully characterized. Whole‐mount preparations of embryonic and adult gut were processed for histochemistry or immunohistochemistry to reveal β‐gal plus markers of undifferentiated neural crest cells (in embryos) or enteric neurons (in adults). In embryonic mice, over 90% of undifferentiated neural crest‐derived cells (identified using antibodies to p75) were β‐gal^+^. Importantly, crest‐derived cells at the migratory wavefront were all β‐gal^+^. In adult mice, only a subpopulation of enteric neurons was β‐gal^+^, while glial cells showed no β‐gal staining. Considerable variation was observed between the small intestine and colon in the proportion of myenteric neurons that showed β‐gal staining. We examined whether known classes of enteric neurons varied in their expression of D__β__H‐nlacZ. In the myenteric plexus of the jejunum and colon, large calretinin^+^ neurons did not express lacZ, suggesting that the incomplete penetrance of the D__β__H‐nlacZ transgene observed in adult mice is not random. We conclude that the D__β__H‐nlacZ transgene provides a reliable marker for examining the colonization of the developing gut by neural crest cells. However, in adult mice, there is variation between mice, between gut regions, and between different classes of enteric neurons in the expression of the transgene. J. Comp. Neurol. 464:208–219, 2003. © 2003 Wiley‐Liss, Inc.
📜 SIMILAR VOLUMES