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An Explant Assay for Assessing Cellular Behavior of the Cranial Mesenchyme
Published on: January 20, 2013
Mouse Shh is required for prechordal plate maintenance during brain and craniofacial morphogenesis
Kazushi Aoto1, Yayoi Shikata, Hajime Imai
1Molecular Neuropathology Group, Brain Science Institute, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
Insights
Sonic hedgehog (Shh) signaling is crucial for maintaining prechordal plate (PrCP) cells, which are essential for midline brain and craniofacial development. This finding sheds light on the mechanisms behind holoprosencephaly (HPE).
Area of Science:
- Developmental Biology
- Neuroscience
- Genetics
Background:
- Holoprosencephaly (HPE) is a common human birth defect resulting from the absence of midline cells in brain, facial, and oral structures.
- Understanding the pathoetiology of HPE requires investigating the role of mammalian prechordal plate (PrCP) cells and sonic hedgehog (Shh) signaling in development.
Purpose of the Study:
- To investigate the involvement of mammalian PrCP cells in HPE pathogenesis.
- To determine the requirement of Shh in PrCP development and its role in midline formation.
Main Methods:
- Rat PrCP lesion experiments and DiI labeling were employed.
- Analysis of Shh(-/-) and chimeric embryos was conducted to assess Shh signaling's role.
- Investigation of hedgehog (HH)-responding cell development in the absence of Shh signaling.
Main Results:
- PrCP cells are essential for the midline development of the forebrain, foregut endoderm, and ventral cranial mesoderm.
- PrCP cells fail to develop into ventral cranial mesoderm in Shh(-/-) embryos.
- Shh signaling is required non-cell autonomously for PrCP cell maintenance and induces differentiation of HH-responding cells into midline cells.
Conclusions:
- Maintenance of a viable PrCP cell population by Shh signaling is essential for midline brain and craniofacial structure development.
- These findings offer new insights into the mechanisms underlying HPE pathoetiology during morphogenesis.
Abstract:
In humans, holoprosencephaly (HPE) is a common birth defect characterized by the absence of midline cells from brain, facial, and oral structures. To understand the pathoetiology of HPE, we investigated the involvement of mammalian prechordal plate (PrCP) cells in HPE pathogenesis and the requirement of the secreted protein sonic hedgehog (Shh) in PrCP development. We show using rat PrCP lesion experiments and DiI labeling that PrCP cells are essential for midline development of the forebrain, foregut endoderm, and ventral cranial mesoderm in mammals. We demonstrate that PrCP cells do not develop into ventral cranial mesoderm in Shh(-/-) embryos. Using Shh(-/-) and chimeric embryos we show that Shh signal is required for the maintenance of PrCP cells in a non-cell autonomous manner. In addition, the hedgehog (HH)-responding cells that normally appear during PrCP development to contribute to midline tissues, do not develop in the absence of Shh signaling. This suggests that Shh protein secreted from PrCP cells induces the differentiation of HH-responding cells into midline cells. In the present study, we show that the maintenance of a viable population of PrCP cells by Shh signal is an essential process in development of the midline of the brain and craniofacial structures. These findings provide new insight into the mechanism underlying HPE pathoetiology during dynamic brain and craniofacial morphogenesis.
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