MLLT3 Regulates Melanoma Stemness and Progression by Inhibiting HMGB1 Nuclear Entry and MAGEA1 M5C Modification. [PDF]
Li Y +8 more
europepmc +1 more source
Corrigendum: No evidence for epitranscriptomic m5C modification of SARS-CoV-2, HIV, and MLV viral RNA. [PDF]
Huang A +4 more
europepmc +1 more source
NSUN2-mediated m<sup>5</sup>C modification drives alternative splicing reprogramming and promotes multidrug resistance in anaplastic thyroid cancer through the NSUN2/SRSF6/UAP1 signaling axis. [PDF]
Hou X +12 more
europepmc +1 more source
Roles of RNA m5C modification patterns in prognosis and tumor microenvironment infiltration of diffuse large B-cell lymphoma. [PDF]
Cui W +12 more
europepmc +1 more source
Metabolic Recoding of NSUN2-Mediated m<sup>5</sup>C Modification Promotes the Progression of Colorectal Cancer via the NSUN2/YBX1/m<sup>5</sup>C-ENO1 Positive Feedback Loop. [PDF]
Chen B +11 more
europepmc +1 more source
m6A and m5C modifications as the gears: CmoCK1 mRNA travels to promote chilling tolerance
openaire +2 more sources
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Emerging Role of RNA m5C Modification in Cardiovascular Diseases
Journal of Cardiovascular Translational Research, 2022Epitranscriptomics is the emerging field of research that comprises the study of epigenetics changes in RNAs. Progressing development in the field of epigenetics has helped to manage and comprehend human diseases. RNA methylation regulates all aspects of RNA functions, which are involved in the pathogenesis of human diseases.
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m5C-Seq: Machine learning-enhanced profiling of RNA 5-methylcytosine modifications
Computers in Biology and MedicineEpigenetic modifications, particularly RNA methylation and histone alterations, play a crucial role in heredity, development, and disease. Among these, RNA 5-methylcytosine (m5C) is the most prevalent RNA modification in mammalian cells, essential for processes such as ribosome synthesis, translational fidelity, mRNA nuclear export, turnover, and ...
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The Role of RNA m5C Modification in Central Nervous System Diseases
Discovery MedicineAs advances in RNA modification research progress, the significance of 5-methylcytosine (m5C) modification is being increasingly acknowledged. m5C undergoes modification by the methyltransferase NOP2/Sun domain (NSUN) family/DNA methyltransferase (DNMT) family (writer) and is removed by demethylases (eraser), including the ten-eleven translocation (TET)
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