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Updated: Jan 26, 2026

An Engineered Split-TET2 Enzyme for Chemical-inducible DNA Hydroxymethylation and Epigenetic Remodeling
Published on: December 18, 2017
Ring1b-dependent epigenetic remodelling is an essential prerequisite for pancreatic carcinogenesis
Simone Benitz1,2, Tobias Straub3, Ujjwal Mukund Mahajan1
1Department of Medicine II, University Hospital, LMU Munich, Munich, Germany.
Background And Aims:
Besides well-defined genetic alterations, the dedifferentiation of mature acinar cells is an important prerequisite for pancreatic carcinogenesis. Acinar-specific genes controlling cell homeostasis are extensively downregulated during cancer development; however, the underlying mechanisms are poorly understood. Now, we devised a novel in vitro strategy to determine genome-wide dynamics in the epigenetic landscape in pancreatic carcinogenesis.
Design:
With our in vitro carcinogenic sequence, we performed global gene expression analysis and ChIP sequencing for the histone modifications H3K4me3, H3K27me3 and H2AK119ub. Followed by a comprehensive bioinformatic approach, we captured gene clusters with extensive epigenetic and transcriptional remodelling. Relevance of Ring1b-catalysed H2AK119ub in acinar cell reprogramming was studied in an inducible Ring1b knockout mouse model. CRISPR/Cas9-mediated Ring1b ablation as well as drug-induced Ring1b inhibition were functionally characterised in pancreatic cancer cells.
Results:
The epigenome is vigorously modified during pancreatic carcinogenesis, defining cellular identity. Particularly, regulatory acinar cell transcription factors are epigenetically silenced by the Ring1b-catalysed histone modification H2AK119ub in acinar-to-ductal metaplasia and pancreatic cancer cells. Ring1b knockout mice showed greatly impaired acinar cell dedifferentiation and pancreatic tumour formation due to a retained expression of acinar differentiation genes. Depletion or drug-induced inhibition of Ring1b promoted tumour cell reprogramming towards a less aggressive phenotype.
Conclusions:
Our data provide substantial evidence that the epigenetic silencing of acinar cell fate genes is a mandatory event in the development and progression of pancreatic cancer. Targeting the epigenetic repressor Ring1b could offer new therapeutic options.
Insights
Epigenetic silencing of acinar cell genes by Ring1b is crucial for pancreatic cancer development. Inhibiting Ring1b can reverse dedifferentiation and reduce tumor formation, offering new therapeutic strategies.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Pancreatic carcinogenesis involves acinar cell dedifferentiation and downregulation of cell homeostasis genes.
- Mechanisms underlying this gene downregulation in pancreatic cancer remain poorly understood.
- Novel in vitro strategies are needed to study epigenetic landscape dynamics during carcinogenesis.
Purpose of the Study:
- To investigate genome-wide epigenetic and transcriptional changes during pancreatic carcinogenesis.
- To elucidate the role of Ring1b-catalyzed histone modification H2AK119ub in acinar cell reprogramming.
- To explore therapeutic potential of targeting Ring1b in pancreatic cancer.
Main Methods:
- In vitro carcinogenic model with global gene expression and ChIP sequencing (H3K4me3, H3K27me3, H2AK119ub).
- Bioinformatic analysis to identify epigenetically and transcriptionally remodeled gene clusters.
- Inducible Ring1b knockout mouse model and CRISPR/Cas9-mediated Ring1b ablation in pancreatic cancer cells.
Main Results:
- Epigenomic modifications define cellular identity during pancreatic carcinogenesis.
- Ring1b-catalyzed H2AK119ub epigenetically silences key acinar cell transcription factors.
- Ring1b knockout impaired dedifferentiation and tumor formation; Ring1b inhibition promoted reprogramming to a less aggressive phenotype.
Conclusions:
- Epigenetic silencing of acinar cell fate genes is essential for pancreatic cancer development and progression.
- Targeting the epigenetic repressor Ring1b presents a promising therapeutic strategy for pancreatic cancer.
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