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R-Spondin family members regulate the Wnt pathway by a common mechanism. | LitMetric

AI Article Synopsis

  • The R-Spondin (RSpo) family of proteins plays a crucial role in activating the Wnt signaling pathway, although the four members show notable differences in their expression and effects in knockout mice.
  • All RSpo proteins can activate the canonical Wnt pathway, with RSpo2 and RSpo3 being more effective than RSpo1, while RSpo4 shows little activity.
  • RSpo proteins enhance Wnt signaling by requiring Wnt ligands and LRP6 for function and inhibiting DKK1, which is crucial for their role in amplifying Wnt signaling in biological contexts.

Article Abstract

The R-Spondin (RSpo) family of secreted proteins is implicated in the activation of the Wnt signaling pathway. Despite the high structural homology between the four members, expression patterns and phenotypes in knockout mice have demonstrated striking differences. Here we dissected and compared the molecular and cellular function of all RSpo family members. Although all four RSpo proteins activate the canonical Wnt pathway, RSpo2 and 3 are more potent than RSpo1, whereas RSpo4 is relatively inactive. All RSpo members require Wnt ligands and LRP6 for activity and amplify signaling of Wnt3A, Wnt1, and Wnt7A, suggesting that RSpo proteins are general regulators of canonical Wnt signaling. Like RSpo1, RSpo2-4 antagonize DKK1 activity by interfering with DKK1 mediated LRP6 and Kremen association. Analysis of RSpo deletion mutants indicates that the cysteine-rich furin domains are sufficient and essential for the amplification of Wnt signaling and inhibition of DKK1, suggesting that Wnt amplification by RSpo proteins may be a direct consequence of DKK1 inhibition. Together, these findings indicate that RSpo proteins modulate the Wnt pathway by a common mechanism and suggest that coexpression with specific Wnt ligands and DKK1 may determine their biological specificity in vivo.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2397303PMC
http://dx.doi.org/10.1091/mbc.e08-02-0187DOI Listing

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