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Bacillus thuringiensis strain:28s Genome sequencing
Bacillus pacificus strain:28s Genome sequencing and assembly
We have recently found that the human methyltransferase ZCCHC4 is responsible for introducing the single m6A modification in 28S rRNA. The project is aimed at further elucidating the functional consequences of such methylation. To this end, protein mass spectrometry is utilized to identify proteins ...
ORGANISM(S): Homo sapiens (Human) 
2019-11-22 | PXD013354 | Pride
We report how unique RNA seq profiles of ribosomal RNA (18S, 28S) present in sperm indicate specific cleavage sites. Additionally, these sequencing results reveal how overall character of RNA (GC content) can significantly affect overall distribution of mapped reads. Examination of rRNA population ...
ORGANISM(S): Homo sapiens 
Phylogeny of Metopograpsus based on nuclear 28S rDNA
The human methyltransferase ZCCHC4 catalyses N6-methyladenosine modification of 28S ribosomal RNA
RNA methylations are essential both for RNA structure and function, and are introduced by a number of distinct methyltransferases (MTases). In recent years, N6-methyladenosine (m6A) modification of eukaryotic mRNA has been subject to intense studies, and it has been demonstrated that m6A is a revers...
ORGANISM(S): Homo sapiens 
2019-11-25 | GSE128994 | GEO
The field of epitranscriptomics is growing in importance, with chemical modification of RNA being associated with a wide variety of biological phenomena. Mass spectrometry (MS) enables the identification of modified RNA residues within their sequence contexts, by using analogous approaches to shotgu...
ORGANISM(S): Homo sapiens (Human) 
2020-03-31 | PXD016323 | Pride
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