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Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
Loss-of-function point mutations and two-furin domain derivatives provide insights about R-spondin2 structure and
Sheng-Jian Li1, Ten-Yang Yen, Yoshimi Endo
1Laboratory of Cellular and Molecular Biology, National Cancer Institute, 37 Convent Drive, Bethesda, MD 20892, USA.
Abstract:
R-spondins (Rspos) potentiate Wnt/beta-catenin signaling, an important pathway in embryonic development that is constitutively active in many cancers. To analyze Rspo structure and function, we expressed full-length wild-type Rspo2 and Rspo2 point mutants corresponding to Rspo4 variants that have been linked to developmental defects. The Rspo2 mutants had markedly reduced potency relative to the wild-type protein,demonstrating for the first time specific amino acid residues in Rspos that are critical for beta-catenin signaling. The diminished activity of Rspo2/C78Y and Rspo2/C113R was attributable to a defect in their secretion, while Rspo2/Q70R exhibited a decrease in its intrinsic activity. Cysteine assignments in a Rspo2 derivative containing only the two furin-like domains (Rspo2-2F) provided the first information about the disulfide bonding pattern of this motif, which was characterized by multiple short loops and unpaired cysteine residues, and established that the loss-of-function cysteine mutants disrupted disulfide bond formation. Moreover, Rspo2-2F demonstrated potent activity and synergized strongly with Wnt-3a in a beta-catenin reporter assay. In contrast, an Rspo2-2F derivative containing the Q70R substitution showed significantly reduced activity, although it still synergized with Wnt-3a in the reporter assay. Rspo2-2F derivatives elicited an unusually sustained phosphorylation (20 h) of the Wnt co-receptor, low density lipoprotein receptor-related protein 6 (LRP6), as well as an increase in cell surface LRP6. Co-immunoprecipitation experiments involving LRP6 and Kremens suggested that these associations contribute to Rspo2 activity, although the lack of major differences between wild-type and Q70R derivatives implied that additional interactions may be important.
Insights
R-spondins (Rspos) are crucial for Wnt/beta-catenin signaling. This study identifies specific amino acid residues critical for Rspo function and secretion, revealing insights into their role in developmental pathways and cancer.
Area of Science:
- Biochemistry
- Developmental Biology
- Molecular Biology
Background:
- R-spondins (Rspos) are key modulators of the Wnt/beta-catenin signaling pathway.
- This pathway is vital for embryonic development and is often dysregulated in various cancers.
Purpose of the Study:
- To investigate the structure-function relationship of R-spondins, specifically Rspo2.
- To identify critical amino acid residues affecting Rspo2 activity, secretion, and interaction with Wnt pathway components.
Main Methods:
- Expression and analysis of full-length wild-type Rspo2 and point mutants.
- Characterization of Rspo2 derivatives focusing on furin-like domains.
- Assessment of beta-catenin signaling potentiation using reporter assays.
- Analysis of LRP6 phosphorylation and cell surface expression.
- Co-immunoprecipitation assays to study protein interactions.
Main Results:
- Specific Rspo2 mutants (Rspo2/C78Y, Rspo2/C113R) showed reduced potency due to impaired secretion.
- The Rspo2/Q70R mutant exhibited decreased intrinsic activity.
- Disulfide bond formation within Rspo2 furin-like domains was characterized, and loss-of-function mutants disrupted this.
- Rspo2-2F demonstrated potent Wnt-3a synergy, while Rspo2-2F/Q70R showed reduced activity.
- Rspo2 derivatives sustained LRP6 phosphorylation and increased cell surface LRP6.
Conclusions:
- Identified critical amino acid residues essential for Rspo2 function and secretion.
- Elucidated the disulfide bonding pattern in Rspo2 furin-like domains.
- Demonstrated the role of Rspo2 in modulating LRP6 phosphorylation and cell surface levels.
- Suggested that Rspo2 interactions with LRP6 and Kremen are important for its activity.
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