N6-adenosine methylation is a frequent modification of mRNAs and their precursors, but little is known about the mechanism of the reaction or the function of the modification. To explore these questions, we developed conditions to examine N6-adenosine methylase activity in HeLa cell nuclear extracts. Transfer of the methyl group from S-[3H methyl]-adenosylmethionine to unlabeled random copolymer RNA substrates of varying ribonucleotide composition revealed a substrate specificity consistent with a previously deduced consensus sequence, Pu[G greater than A]AC[A/C/U]. 32-P labeled RNA substrates of defined sequence were used to examine the minimum sequence requirements for methylation. Each RNA was 20 nucleotides long, and contained either th...
Whole transcriptome analysis reveals that one third of human and mouse genes express mRNAs containin...
Summary: N6-adenosine methylation (m6A) of messenger RNA (mRNA) plays key regulatory roles in gene e...
The best characterized and most abundant internal RNA modification is the methylation of adenosine a...
N6-methyladenosine (m6A) is the most prevalent and reversible internal modification in mammalian mes...
AbstractN6-methyl-adenosine (m6A) is one of the most common and abundant modifications on RNA molecu...
odifi cation of internal adenosines in messenger RNA (mRNA) by methylation of the N6 position (m6A) ...
Nearly all classes of coding and non-coding RNA undergo post-transcriptional modification including ...
<p>(A) Incorporation of <sup>3</sup>H-methyl into polyA. Homopolymer RNAs (1 µg) were incubated with...
RNA methylation at the nitrogen sixth of adenosine (m6A, N6-methyladenosine) is the most abundant RN...
Abstract First identified in 1974, m6A RNA methylation, which serves as a predominant internal modif...
N 6-adenosine methylation (m6A) of messenger RNA (mRNA) plays key regulatory roles in gene expressio...
Deoxyribozymes are synthetic enzymes made of DNA that can catalyze the cleavage or formation of phos...
The RNA methylation of adenosine at the N6-position (m6A) has attracted significant attention becaus...
The role of m6A methylation of RNA has remained elusive for decades, however recent technological ad...
The highly abundant N6-methyladenosine (m6A) RNA modification affects most aspects of mRNA function,...
Whole transcriptome analysis reveals that one third of human and mouse genes express mRNAs containin...
Summary: N6-adenosine methylation (m6A) of messenger RNA (mRNA) plays key regulatory roles in gene e...
The best characterized and most abundant internal RNA modification is the methylation of adenosine a...
N6-methyladenosine (m6A) is the most prevalent and reversible internal modification in mammalian mes...
AbstractN6-methyl-adenosine (m6A) is one of the most common and abundant modifications on RNA molecu...
odifi cation of internal adenosines in messenger RNA (mRNA) by methylation of the N6 position (m6A) ...
Nearly all classes of coding and non-coding RNA undergo post-transcriptional modification including ...
<p>(A) Incorporation of <sup>3</sup>H-methyl into polyA. Homopolymer RNAs (1 µg) were incubated with...
RNA methylation at the nitrogen sixth of adenosine (m6A, N6-methyladenosine) is the most abundant RN...
Abstract First identified in 1974, m6A RNA methylation, which serves as a predominant internal modif...
N 6-adenosine methylation (m6A) of messenger RNA (mRNA) plays key regulatory roles in gene expressio...
Deoxyribozymes are synthetic enzymes made of DNA that can catalyze the cleavage or formation of phos...
The RNA methylation of adenosine at the N6-position (m6A) has attracted significant attention becaus...
The role of m6A methylation of RNA has remained elusive for decades, however recent technological ad...
The highly abundant N6-methyladenosine (m6A) RNA modification affects most aspects of mRNA function,...
Whole transcriptome analysis reveals that one third of human and mouse genes express mRNAs containin...
Summary: N6-adenosine methylation (m6A) of messenger RNA (mRNA) plays key regulatory roles in gene e...
The best characterized and most abundant internal RNA modification is the methylation of adenosine a...