The role of noncoding RNAs in pancreatic birth defects
Ziyue Zoey Yang1,2,3,4, Ronald J Parchem1,2,3,4
1Development, Disease Models & Therapeutics Graduate Program, Baylor College of Medicine, Houston, Texas, USA.
Abstract:
Congenital defects in the pancreas can cause severe health issues such as pancreatic cancer and diabetes which require lifelong treatment. Regenerating healthy pancreatic cells to replace malfunctioning cells has been considered a promising cure for pancreatic diseases including birth defects. However, such therapies are currently unavailable in the clinic. The developmental gene regulatory network underlying pancreatic development must be reactivated for in vivo regeneration and recapitulated in vitro for cell replacement therapy. Thus, understanding the mechanisms driving pancreatic development will pave the way for regenerative therapies. Pancreatic progenitor cells are the precursors of all pancreatic cells which use epigenetic changes to control gene expression during differentiation to generate all of the distinct pancreatic cell types. Epigenetic changes involving DNA methylation and histone modifications can be controlled by noncoding RNAs (ncRNAs). Indeed, increasing evidence suggests that ncRNAs are indispensable for proper organogenesis. Here, we summarize recent insight into the role of ncRNAs in the epigenetic regulation of pancreatic development. We further discuss how disruptions in ncRNA biogenesis and expression lead to developmental defects and diseases. This review summarizes in vivo data from animal models and in vitro studies using stem cell differentiation as a model for pancreatic development.
Insights
Noncoding RNAs (ncRNAs) are crucial for pancreatic development and cell differentiation. Understanding their role in epigenetic regulation is key to developing regenerative therapies for pancreatic diseases.
Area of Science:
- Developmental biology
- Epigenetics
- Molecular biology
Background:
- Congenital pancreatic defects can lead to severe diseases like diabetes and pancreatic cancer.
- Regenerative therapies offer a potential cure but are not yet clinically available.
- Understanding pancreatic development mechanisms is essential for advancing regenerative medicine.
Purpose of the Study:
- To review the role of noncoding RNAs (ncRNAs) in the epigenetic regulation of pancreatic development.
- To discuss how ncRNA dysregulation contributes to pancreatic developmental defects and diseases.
Main Methods:
- Summarizes in vivo data from animal models of pancreatic development.
- Reviews in vitro studies using stem cell differentiation as a model for pancreatic development.
Main Results:
- Noncoding RNAs (ncRNAs) play indispensable roles in controlling gene expression during pancreatic development.
- Epigenetic modifications, including DNA methylation and histone modifications, are regulated by ncRNAs.
- Disruptions in ncRNA biogenesis and expression are linked to pancreatic developmental abnormalities.
Conclusions:
- Noncoding RNAs are critical regulators of pancreatic organogenesis through epigenetic mechanisms.
- Further research into ncRNAs may unlock novel therapeutic strategies for pancreatic diseases.
- Targeting ncRNAs could pave the way for effective in vivo regeneration and in vitro cell replacement therapies.
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