A New CUT&RUN Low Volume-Urea (LoV-U) protocol uncovers Wnt/β-catenin tissue-specific genomic targets
Zambanini, G.; Nordin, A.; Jonasson, M.; Pagella, P.; Cantu, C.
Show abstract
Upon WNT/{beta}-catenin pathway activation, stabilized {beta}-catenin travels to the nucleus where it associates with the TCF/LEF family of transcription factors, which constitutively bind to genomic Wnt Responsive Elements (WREs), to activate transcription of target genes. Discovering the binding profile of {beta}-catenin is therefore required to unambiguously assign direct targets of WNT signaling. Cleavage Under Target and Release Using Nuclease (CUT&RUN) has recently emerged as a prime technique for mapping the binding profile of chromatin interacting proteins. In our attempts to profile different regulators of the WNT/{beta}-catenin transcriptional complex, CUT&RUN performed reliably when targeting transcription factors such as TCF/LEF, but it failed to produce consistent binding patterns of the non-DNA-binding {beta}-catenin. Here, we present a biochemical modification of the CUT&RUN protocol, which we refer to as LoV-U (Low Volume and Urea), that enables the generation of robust and reproducible {beta}-catenin binding profiles. CUT&RUN-LoV-U uncovers direct WNT/{beta}-catenin target genes in human cells, as well as in ex vivo cells isolated from developing mouse tissue. CUT&RUN-LoV-U can profile all classes of chromatin regulators tested and is well suited for simultaneous processing of several samples. We submit that the application of our protocol will allow the detection of the complex system of tissue-specific WNT/{beta}-catenin target genes, together with other non-DNA-binding transcriptional regulators that act downstream of ontogenetically fundamental signaling cascades.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Large-scale analysis of the integration of enhancer-enhancer signals by promoters 94%
- Assessment of the Histone Mark-based Epigenomic Landscape in Human Myometrium at Term Pregnancy 93%
- A β-catenin-driven switch in TCF/LEF transcription factor binding to DNA target sites promotes commitment of mammalian nephron progenitor cells 93%
Similar papers in this journal
Similar papers in this journal
- AnnoMiner: a new web-tool to integrate epigenetics, transcription factor occupancy, and transcriptomics data to predict transcriptional regulators 94%
- Identification of downstream effectors of retinoic acid specifying the zebrafish pancreas by integrative genomics. 94%
- Multi-landmark alignment of genomic signals reveals conserved expression patterns across transcription start sites 93%
Similar papers in this journal
- Transcription initiation mapping in 31 bovine tissues reveals complex promoter activity, pervasive transcription, and tissue-specific promoter usage 94%
- An integrative view of the regulatory and transcriptional landscapes in mouse hematopoiesis 93%
- A flexible repertoire of transcription factor binding sites and diversity threshold determines enhancer activity in embryonic stem cells 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.