Cells

How NSUN Controls Stem Cell Behavior by Modifying RNA

Updated

Abstract

N6-methyladenosine (m6A) and (m5C) are key RNA modifications associated with gene regulation.

  • m5C modifications are catalyzed by the of RNA methyltransferases, impacting stem cell identity and differentiation.
  • Evidence indicates that NSUN-mediated m5C is found on various RNA types, including rRNA, tRNA, mRNA, and enhancer RNAs.
  • m5C influences critical biological processes such as self-renewal, cell cycle progression, RNA stability, and lineage specification.
  • Disruption of m5C regulation is linked to developmental defects during embryogenesis.
  • The interplay of m5C with other RNA modifications, like m6A, is an important area for future research.

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What this is

  • This review examines the role of () RNA modifications in stem cell biology.
  • It focuses on the of RNA methyltransferases, which catalyze modifications.
  • The review discusses how impacts stem cell identity, pluripotency, and differentiation.
  • Future research is needed to clarify NSUN functions and their implications for development and disease.

Essence

  • NSUN-mediated RNA modifications are crucial for regulating stem cell identity and differentiation. Disruption of regulation can lead to developmental defects, emphasizing its importance in embryogenesis.

Key takeaways

  • modifications are catalyzed by the of methyltransferases, impacting various RNA types such as mRNA, tRNA, and rRNA. These modifications influence processes like RNA stability, translation efficiency, and cell cycle progression.
  • Loss of regulation impairs pluripotency and can cause developmental abnormalities. For example, NSUN2 depletion affects neural stem cell responses and differentiation, while NSUN3 deficiency disrupts mitochondrial function and proliferation.
  • modifications are linked to cancer stem cell biology, with NSUN7 showing a correlation with poor prognosis in glioblastoma. This suggests that may play a role in tumor progression and self-renewal.

Caveats

  • Current knowledge of regulation is incomplete, particularly regarding the roles of various members. Many functions remain poorly understood and require further investigation.
  • Technical limitations in detecting modifications can lead to inconsistent results, complicating the interpretation of studies. Future research must address these challenges to provide clearer insights.

Definitions

  • 5-methylcytosine (m5C): A chemical modification of cytosine in RNA that plays a role in gene regulation and cellular processes.
  • NSUN family: A group of RNA methyltransferases responsible for adding m5C modifications to various RNA substrates.

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Funding

Competing interests

The authors declare no conflicts of interest.
PubMed

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