Summary: N6-adenosine methylation (m6A) of messenger RNA (mRNA) plays key regulatory roles in gene expression. Accurate measurement of m6A levels is thus critical to understand its dynamic changes in various biological settings. Here, we provide a protocol to quantitate the levels of adenosine and m6A in cellular mRNAs. Using nuclease and phosphatase, we digest mRNA into nucleosides, which are subsequently quantified using liquid chromatography mass spectrometry.For complete details on the use and execution of this protocol, please refer to Cho et al. (2021)
We are currently assisting in the explosion of epitranscriptomics, which studies the functional role...
More than 100 types of chemical modifications in RNA have been well documented. Recently, several mo...
RNA molecules undergo various chemical modifications that play critical roles in a wide range of bio...
N 6-adenosine methylation (m6A) of messenger RNA (mRNA) plays key regulatory roles in gene expressio...
RNA methylation at the nitrogen sixth of adenosine (m6A, N6-methyladenosine) is the most abundant RN...
The best characterized and most abundant internal RNA modification is the methylation of adenosine a...
Colorectal cancer and gastric cancer are the most prevalent gastrointestinal malignancies worldwide,...
Whole transcriptome analysis reveals that one third of human and mouse genes express mRNAs containin...
A flurry of methods has been developed in recent years to identify N6-methyladenosine (m6A) sites ac...
AbstractN6-methyl-adenosine (m6A) is one of the most common and abundant modifications on RNA molecu...
SummaryMethylation of the N6 position of adenosine (m6A) is a posttranscriptional modification of RN...
Recent methods for transcriptome-wide N6-methyl-adenosine(m6A) profiling have facilitated investigat...
Abstract First identified in 1974, m6A RNA methylation, which serves as a predominant internal modif...
Nutrients and metabolic pathways regulate cell growth and cell fate decisions via epigenetic modific...
Both genome and transcriptome carry a wide range of different chemical modifications. Among these mo...
We are currently assisting in the explosion of epitranscriptomics, which studies the functional role...
More than 100 types of chemical modifications in RNA have been well documented. Recently, several mo...
RNA molecules undergo various chemical modifications that play critical roles in a wide range of bio...
N 6-adenosine methylation (m6A) of messenger RNA (mRNA) plays key regulatory roles in gene expressio...
RNA methylation at the nitrogen sixth of adenosine (m6A, N6-methyladenosine) is the most abundant RN...
The best characterized and most abundant internal RNA modification is the methylation of adenosine a...
Colorectal cancer and gastric cancer are the most prevalent gastrointestinal malignancies worldwide,...
Whole transcriptome analysis reveals that one third of human and mouse genes express mRNAs containin...
A flurry of methods has been developed in recent years to identify N6-methyladenosine (m6A) sites ac...
AbstractN6-methyl-adenosine (m6A) is one of the most common and abundant modifications on RNA molecu...
SummaryMethylation of the N6 position of adenosine (m6A) is a posttranscriptional modification of RN...
Recent methods for transcriptome-wide N6-methyl-adenosine(m6A) profiling have facilitated investigat...
Abstract First identified in 1974, m6A RNA methylation, which serves as a predominant internal modif...
Nutrients and metabolic pathways regulate cell growth and cell fate decisions via epigenetic modific...
Both genome and transcriptome carry a wide range of different chemical modifications. Among these mo...
We are currently assisting in the explosion of epitranscriptomics, which studies the functional role...
More than 100 types of chemical modifications in RNA have been well documented. Recently, several mo...
RNA molecules undergo various chemical modifications that play critical roles in a wide range of bio...