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Accession: PRJNA1139842 ID: 1139842

The rRNA epitranscriptome and myonuclear SNORD landscape in skeletal muscle fibers contributes to ribosome heterogeneity and is altered by hypertrophic stimulus (house mouse)

See Genome Information for Mus musculus
In cell biology, ribosomal RNA (rRNA) 2'O-methyl (2'-O-Me) is the most prevalent post-transcriptional chemical modification contributing to ribosome heterogeneity. More...
AccessionPRJNA1139842; GEO: GSE273053
ScopeMultiisolate
OrganismMus musculus[Taxonomy ID: 10090]
Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi; Mammalia; Eutheria; Euarchontoglires; Glires; Rodentia; Myomorpha; Muroidea; Muridae; Murinae; Mus; Mus; Mus musculus
PublicationsCui M et al., "The rRNA epitranscriptome and myonuclear SNORD landscape in skeletal muscle fibers contributes to ribosome heterogeneity and is altered by a hypertrophic stimulus.", Am J Physiol Cell Physiol, 2024 Sep 1;327(3):C516-C524
SubmissionRegistration date: 24-Jul-2024
Department of Physiology and Pharmacology, Karolinska Institutet
RelevanceModel Organism
Project Data:
Resource NameNumber
of Links
Sequence data
SRA Experiments4
Publications
PubMed1
PMC1
Other datasets
BioSample4
GEO DataSets1
GEO Data Details
ParameterValue
Data volume, Supplementary Mbytes35
SRA Data Details
ParameterValue
Data volume, Gbases23
Data volume, Mbytes17487

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  • The rRNA epitranscriptome and myonuclear SNORD landscape in skeletal muscle fibe...
    The rRNA epitranscriptome and myonuclear SNORD landscape in skeletal muscle fibers contributes to ribosome heterogeneity and is altered by hypertrophic stimulus
    The rRNA epitranscriptome and myonuclear SNORD landscape in skeletal muscle fibers contributes to ribosome heterogeneity and is altered by hypertrophic stimulus
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