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Thirty Years' History since the Discovery of Pax6: From Central Nervous System Development to Neurodevelopmental
Shohei Ochi1, Shyu Manabe1, Takako Kikkawa1
1Department of Developmental Neuroscience, Tohoku University Graduate School of Medicine, Sendai 980-8575, Japan.
Insights
Pax6 is a crucial transcription factor for central nervous system (CNS) development, regulating brain patterning and neural stem cell proliferation. Its dysfunction is linked to neurodevelopmental disorders in humans and rodents.
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- Pax6 is a sequence-specific DNA binding transcription factor vital for the developing and adult central nervous system (CNS).
- Mutations in Pax6 are associated with significant morphological and functional abnormalities, highlighting its critical roles in CNS development.
Purpose of the Study:
- To review the expression and function of Pax6 during brain development.
- To explore the implications of Pax6 in neuropathology and neurodevelopmental disorders.
Main Methods:
- Review of existing literature on Pax6 gene expression and function.
- Analysis of phenotypes in spontaneous Pax6 mutant rodents.
- Examination of human genetic data linking PAX6 mutations to syndromes and disorders.
Main Results:
- Pax6 is essential for brain patterning along anteroposterior and dorsoventral axes.
- Pax6 influences the balance of neural stem cell proliferation and differentiation.
- PAX6 mutations are linked to WAGR syndrome, autism spectrum disorder (ASD), and intellectual disability.
Conclusions:
- Pax6 plays pivotal roles in CNS development, including brain regionalization and stem cell regulation.
- Understanding Pax6 function in rodents provides insights into human neurodevelopmental disorders and neuropathology.
Abstract:
Pax6 is a sequence-specific DNA binding transcription factor that positively and negatively regulates transcription and is expressed in multiple cell types in the developing and adult central nervous system (CNS). As indicated by the morphological and functional abnormalities in spontaneous Pax6 mutant rodents, Pax6 plays pivotal roles in various biological processes in the CNS. At the initial stage of CNS development, Pax6 is responsible for brain patterning along the anteroposterior and dorsoventral axes of the telencephalon. Regarding the anteroposterior axis, Pax6 is expressed inversely to Emx2 and Coup-TF1, and Pax6 mutant mice exhibit a rostral shift, resulting in an alteration of the size of certain cortical areas. Pax6 and its downstream genes play important roles in balancing the proliferation and differentiation of neural stem cells. The Pax6 gene was originally identified in mice and humans 30 years ago via genetic analyses of the eye phenotypes. The human PAX6 gene was discovered in patients who suffer from WAGR syndrome (i.e., Wilms tumor, aniridia, genital ridge defects, mental retardation). Mutations of the human PAX6 gene have also been reported to be associated with autism spectrum disorder (ASD) and intellectual disability. Rodents that lack the Pax6 gene exhibit diverse neural phenotypes, which might lead to a better understanding of human pathology and neurodevelopmental disorders. This review describes the expression and function of Pax6 during brain development, and their implications for neuropathology.
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