Purified Wnt5a Protein Activates or Inhibits β-Catenin–TCF Signaling Depending on Receptor Context

Очищенный белок Wnt5a активирует или ингибирует передачу сигнала β-катенин–TCF в зависимости от рецепторного контекста
Amanda Mikels, Roel Nusse
2006-03-24

Frizzled 4Ror2 receptorWnt5a proteinreceptor contextβ-catenin–TCF signaling
The Wnts comprise a large class of secreted proteins that control essential developmental processes such as embryonic patterning, cell growth, migration, and differentiation. In the most well-understood "canonical" Wnt signaling pathway, Wnt binding to Frizzled receptors induces beta-catenin protein stabilization and entry into the nucleus, where it complexes with T-cell factor/lymphoid enhancer factor transcription factors to affect the transcription of target genes. In addition to the canonical pathway, evidence for several other Wnt signaling pathways has accumulated, in particular for Wnt5a, which has therefore been classified as a noncanonical Wnt family member. To study the alternative mechanisms by which Wnt proteins signal, we purified the Wnt5a protein to homogeneity. We find that purified Wnt5a inhibits Wnt3a protein-induced canonical Wnt signaling in a dose-dependent manner, not by influencing beta-catenin levels but by downregulating beta-catenin-induced reporter gene expression. The Wnt5a signal is mediated by the orphan tyrosine kinase Ror2, is pertussis toxin insensitive, and does not influence cellular calcium levels. We show that in addition to its inhibitory function, Wnt5a can also activate beta-catenin signaling in the presence of the appropriate Frizzled receptor, Frizzled 4. Thus, this study shows for the first time that a single Wnt ligand can initiate discrete signaling pathways through the activation of two distinct receptors. Based on these and additional observations, we propose a model wherein receptor context dictates Wnt signaling output. In this model, signaling by different Wnt family members is not intrinsically regulated by the Wnt proteins themselves but by receptor availability.
1
In the presence of Frizzled 4, Wnt5a can activate rather than inhibit β-catenin signaling.
2
Purified Wnt5a inhibits Wnt3a-induced canonical β-catenin signaling in a dose-dependent manner.
3
The signaling outcome of a Wnt ligand depends on receptor context and availability, rather than being intrinsically fixed by the ligand.
4
Wnt5a suppresses β-catenin-dependent reporter gene expression without altering cellular β-catenin protein levels.
5
Wnt5a подавляет экспрессию репортерного гена, зависимую от β-катенина, не изменяя уровень белка β-катенина в клетках.
6
Wnt5a-mediated inhibition requires the orphan tyrosine kinase receptor Ror2, is pertussis toxin insensitive, and does not affect cellular calcium levels.
7
Выход сигнала Wnt определяется контекстом и доступностью рецепторов, а не является неизменно заданным самим лигандом.
8
Ингибирующее действие Wnt5a опосредуется рецептором Ror2, нечувствительно к токсину коклюша и не влияет на уровень клеточного кальция.
9
При наличии рецептора Frizzled 4 Wnt5a способен не подавлять, а активировать β-катениновый сигналинг.
10
Пурified Wnt5a дозозависимо ингибирует канонический β-катениновый сигналинг, индуцированный Wnt3a.

Wnt5a protein signaling through distinct receptors, including Ror2 and Frizzled 4

Receptor-context-dependent activation or inhibition of β-catenin–TCF signaling by Wnt5a

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2006-03-24
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Amanda Mikels
Roel Nusse
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