The γ-Protocadherin-C3 isoform inhibits canonical Wnt signalling by binding to and stabilizing Axin1 at the membrane
Изоформа γ-протокадгерина-C3 ингибирует канонический сигнальный путь Wnt, связываясь с Axin1 и стабилизируя его в мембране
2016-08-17
SCID: 54.1/xzsjvve7
Discuss with AI
Axin1 stabilizationDishevelled competitionLrp6 phosphorylationcanonical Wnt signalingγ-Protocadherin-C3
Figures from the paper
Abstract (AI)
The 22 γ-Protocadherin (γ-Pcdh) adhesion molecules encoded by the Pcdhg gene cluster play critical roles in nervous system development, including regulation of dendrite arborisation, neuronal survival, and synaptogenesis. Recently, they have been implicated in suppression of tumour cell growth by inhibition of canonical Wnt signalling, though the mechanisms through which this occurs remain unknown. Here, we show differential regulation of Wnt signalling by individual γ-Pcdhs: The C3 isoform uniquely inhibits the pathway, whilst 13 other isoforms upregulate signalling. Focusing on the C3 isoform, we show that its unique variable cytoplasmic domain (VCD) is the critical one for Wnt pathway inhibition. γ-Pcdh-C3, but not other isoforms, physically interacts with Axin1, a key component of the canonical Wnt pathway. The C3 VCD competes with Dishevelled for binding to the DIX domain of Axin1, which stabilizes Axin1 at the membrane and leads to reduced phosphorylation of Wnt co-receptor Lrp6. Finally, we present evidence that Wnt pathway activity can be modulated up (by γ-Pcdh-A1) or down (by γ-Pcdh-C3) in the cerebral cortex in vivo, using conditional transgenic alleles. Together, these data delineate opposing roles for γ-Pcdh isoforms in regulating Wnt signalling and identify Axin1 as a novel protein interactor of the widely-expressed γ-Pcdh-C3 isoform.
Key Findings
1
Conditional transgenic experiments show that γ-Pcdh-A1 and γ-Pcdh-C3 oppositely modulate Wnt signalling in the cerebral cortex in vivo.
2
The unique variable cytoplasmic domain of γ-Pcdh-C3 is necessary for inhibiting Wnt signalling.
3
The γ-Pcdh-C3 isoform uniquely inhibits canonical Wnt signalling, whereas 13 other γ-Pcdh isoforms enhance pathway activity.
4
This interaction stabilizes Axin1 at the membrane, reduces Lrp6 co-receptor phosphorylation, and suppresses canonical Wnt pathway activity.
5
γ-Pcdh-C3 physically interacts with Axin1, and its cytoplasmic domain competes with Dishevelled for Axin1’s DIX domain.
Research Object
γ-Protocadherin isoforms, particularly the γ-Protocadherin-C3 isoform, in canonical Wnt signalling
Research Subject
Isoform-specific regulation of canonical Wnt signalling through γ-Protocadherin-C3 interaction with and stabilization of membrane-associated Axin1
Publication Details
Publication Date
2016-08-17
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest