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Published on: February 16, 2017
Single-cell response to Wnt signaling activation reveals uncoupling of Wnt target gene expression
Simon Söderholm1, Amaia Jauregi-Miguel1, Pierfrancesco Pagella1
1Wallenberg Centre for Molecular Medicine, Linköping University, Linköping, Sweden; Department of Biomedical and Clinical Sciences, Division of Molecular Medicine and Virology, Faculty of Medicine and Health Sciences, Linköping University, Linköping, Sweden.
Abstract:
Wnt signaling drives nuclear translocation of β-catenin and its subsequent association with the DNA-bound TCF/LEF transcription factors, which dictate target gene specificity by recognizing Wnt responsive elements across the genome. β-Catenin target genes are therefore thought to be collectively activated upon Wnt pathway stimulation. However, this appears in contrast with the non-overlapping patterns of Wnt target gene expression in several contexts, including early mammalian embryogenesis. Here we followed Wnt target gene expression in human embryonic stem cells after Wnt pathway stimulation at a single-cell resolution. Cells changed gene expression program over time consistent with three key developmental events: i) loss of pluripotency, ii) induction of Wnt target genes, and iii) mesoderm specification. Contrary to our expectation, not all cells displayed equal amplitude of Wnt target gene activation; rather, they distributed in a continuum from strong to weak responders when ranked based on the expression of the target AXIN2. Moreover, high AXIN2 did not always correspond to elevated expression of other Wnt targets, which were activated in different proportions in individual cells. The uncoupling of Wnt target gene expression was also identified in single cell transcriptomics profiling of other Wnt-responding cell types, including HEK293T, murine developing forelimbs, and human colorectal cancer. Our finding underlines the necessity to identify additional mechanisms that explain the heterogeneity of the Wnt/β-catenin-mediated transcriptional outputs in single cells.
Insights
Wnt signaling activates genes, but single-cell studies reveal varied responses. Not all cells equally activate Wnt target genes, suggesting complex regulation beyond simple pathway stimulation.
Area of Science:
- Developmental Biology
- Molecular Biology
- Stem Cell Biology
Background:
- Wnt signaling, involving β-catenin and TCF/LEF factors, is crucial for gene regulation.
- Wnt target genes are typically assumed to activate collectively upon pathway stimulation.
- Observed non-overlapping gene expression patterns challenge this collective activation model.
Purpose of the Study:
- To investigate Wnt target gene expression heterogeneity at single-cell resolution.
- To understand the dynamics of Wnt pathway activation in human embryonic stem cells.
- To identify mechanisms underlying variable transcriptional output in single cells.
Main Methods:
- Single-cell transcriptomics of human embryonic stem cells after Wnt pathway stimulation.
- Analysis of gene expression dynamics, including pluripotency, Wnt targets, and mesoderm markers.
- Comparative analysis in HEK293T cells, murine developing forelimbs, and human colorectal cancer.
Main Results:
- Human embryonic stem cells exhibited a continuum of Wnt target gene activation, from strong to weak responders.
- High expression of AXIN2 did not consistently correlate with elevated levels of other Wnt targets.
- Uncoupled Wnt target gene expression was also observed in other cell types and contexts.
Conclusions:
- Wnt/β-catenin-mediated transcriptional output is heterogeneous at the single-cell level.
- The assumption of collective Wnt target gene activation is not universally applicable.
- Further research is needed to elucidate the mechanisms driving this observed heterogeneity.
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