Related Experiment Video
Updated: Mar 2, 2026

Analysis of Neural Crest Migration and Differentiation by Cross-species Transplantation
Published on: February 7, 2012
Atg7-Mediated Autophagy Is Involved in the Neural Crest Cell Generation in Chick Embryo
Guang Wang1,2, En-Ni Chen1, Chang Liang1
1Division of Histology & Embryology, Key Laboratory for Regenerative Medicine of the Ministry of Education, Medical College, Jinan University, Guangzhou, 510632, China.
Abstract:
Autophagy plays a very important role in numerous physiological and pathological events. However, it still remains unclear whether Atg7-induced autophagy is involved in the regulation of neural crest cell production. In this study, we found the co-location of Atg7 and Pax7+ neural crest cells in early chick embryo development. Upregulation of Atg7 with unilateral transfection of full-length Atg7 increased Pax7+ and HNK-1+ cephalic and trunk neural crest cell numbers compared to either Control-GFP transfection or opposite neural tubes, suggesting that Atg7 over-expression in neural tubes could enhance the production of neural crest cells. BMP4 in situ hybridization and p-Smad1/5/8 immunofluorescent staining demonstrated that upregulation of Atg7 in neural tubes suppressed the BMP4/Smad signaling, which is considered to promote the delamination of neural crest cells. Interestingly, upregulation of Atg7 in neural tubes could significantly accelerate cell progression into the S phase, implying that Atg7 modulates cell cycle progression. However, β-catenin expression was not significantly altered. Finally, we demonstrated that upregulation of the Atg7 gene could activate autophagy as did Atg8. We have also observed that similar phenotypes, such as more HNK-1+ neural crest cells in the unilateral Atg8 transfection side of neural tubes, and the transfection with full-length Atg8-GFP certainly promote the numbers of BrdU+ neural crest cells in comparison to the GFP control. Taken together, we reveal that Atg7-induced autophagy is involved in regulating the production of neural crest cells in early chick embryos through the modification of the cell cycle.
Insights
Autophagy protein Atg7 enhances neural crest cell production in chick embryos by influencing cell cycle progression. This study reveals Atg7-induced autophagy regulates neural crest cell numbers during early development.
Area of Science:
- Developmental Biology
- Cell Biology
- Molecular Biology
Background:
- Autophagy is crucial in physiological and pathological processes.
- The role of Atg7-induced autophagy in neural crest cell production remains unclear.
Purpose of the Study:
- To investigate the involvement of Atg7-induced autophagy in regulating neural crest cell production during early chick embryo development.
- To explore the molecular mechanisms by which Atg7 influences neural crest cell numbers.
Main Methods:
- Co-localization studies of Atg7 and neural crest cell markers (Pax7, HNK-1).
- Gene manipulation via unilateral transfection of full-length Atg7 and Atg8 in chick embryos.
- Analysis of cell proliferation (BrdU incorporation) and cell cycle progression (S phase).
- Investigation of signaling pathways, including BMP4/Smad and β-catenin.
Main Results:
- Upregulation of Atg7 increased the number of Pax7+ and HNK-1+ neural crest cells.
- Atg7 overexpression suppressed BMP4/Smad signaling and accelerated cell cycle progression into S phase.
- Atg7 and Atg8 transfection promoted neural crest cell numbers, confirming autophagy activation.
- Similar effects were observed with Atg8 transfection, enhancing BrdU+ neural crest cells.
Conclusions:
- Atg7-induced autophagy plays a significant role in regulating neural crest cell production in early chick embryos.
- Atg7 modulates neural crest cell numbers through cell cycle modification.
- Autophagy, mediated by Atg7, is a key factor in developmental processes involving neural crest cells.
More Related Videos
09:07Dissection of Xenopus laevis Neural Crest for in vitro Explant Culture or in vivo Transplantation
Published on: March 4, 2014
09:57Dual Labeling of Neural Crest Cells and Blood Vessels Within Chicken Embryos Using ChickGFP Neural Tube Grafting and Carbocyanine Dye DiI Injection
Published on: May 28, 2015
Related Concept Videos
Determination
Gastrulation