<Doctoral Thesis>
Canonical TGF-β Signaling Negatively Regulates Neuronal Morphogenesis through TGIF/Smad Complex-Mediated CRMP2 Suppression

Creator
Language
Academic Year Conferred
Conferring University
Degree
Degree Type
Publication Type
Access Rights
Related DOI
Abstract Functional neuronal connectivity requires proper neuronal morphogenesis and its dysregulation causes neurodevelopmental diseases. Transforming growth factor-β (TGF-β) family cytokines play pivotal rol...es in development, but little is known about their contribution to morphological development of neurons. Here we show that the Smad-dependent canonical signaling of TGF-β family cytokines negatively regulates neuronal morphogenesis during brain development. Mechanistically, activated Smads form a complex with transcriptional repressor TG-interacting factor (TGIF), and downregulate the expression of a neuronal polarity regulator, collapsin response mediator protein 2. We also demonstrate that TGF-β family signaling inhibits neurite elongation of human induced pluripotent stem cell-derived neurons. Furthermore, the expression of TGF-β receptor 1, Smad4, or TGIF, which have mutations found in patients with neurodevelopmental disorders, disrupted neuronal morphogenesis in both mouse (male and female) and human (female) neurons. Together, these findings suggest that the regulation of neuronal morphogenesis by an evolutionarily conserved function of TGF-β signaling is involved in the pathogenesis of neurodevelopmental diseases.show more

Hide fulltext details.

pdf med3152 pdf 8.45 MB 362 本文
pdf med3152_abstract pdf 114 KB 212 要旨
pdf med3152_review pdf 178 KB 224 審査結果要旨

Details

Record ID
Peer-Reviewed
Related PubMed ID
Report Number
Number of Diploma
Granted Date
Date Accepted
Faculty
Created Date 2018.08.07
Modified Date 2018.11.16

People who viewed this item also viewed