Abstract RNA methylation has emerged as a fundamental process in epigenetic regulation. Accumulating evidences indicate that RNA methylation is essential for many biological functions, and its dysregulation is associated with human cancer progression, particularly in gastrointestinal cancers. RNA methylation has a variety of biological properties, including N6-methyladenosine (m6A), 2-O-dimethyladenosine (m6Am), N1-methyladenosine (m1A), 5-methylcytosine (m5C) and 7-methyl guanosine (m7G). Dynamic and reversible methylation on RNA is mediated by RNA modifying proteins called “writers” (methyltransferases) and “erasers” (demethylases). “Readers” (modified RNA binding proteins) recognize and bind to RNA methylation sites, which ...
Abstract Epigenetic abnormalities play a crucial role in many tumors, including glioma. RNA methylat...
Ribosomes are essential nanomachines responsible for all protein production in cells. Ribosome bioge...
Modification of m6A, as the most abundant mRNA modification, plays diverse roles in various biologic...
Abstract First identified in 1974, m6A RNA methylation, which serves as a predominant internal modif...
Abstract RNA modification, like DNA methylation, histone modification, non-coding RNA modification a...
The field of epitranscriptomics encompasses the study of post-transcriptional RNA modifications and ...
Abstract As one of the most studied ribonucleic acid (RNA) modifications in eukaryotes, N6‐methylade...
Over the last five decades more than 100 types of RNA modifications have been identified in organism...
Methylation of the fundamental macromolecules, DNA/RNA, and proteins, is remarkably abundant, evolut...
Abstract N6-methyladenosine (m6A), the most prevalent modification of mammalian RNA, has received in...
RNA methylation modifications have been found for decades of years, which occur at different RNA typ...
RNA N6-methyladenosine (m6A) has been identified as the most common, abundant and conserved internal...
The recent resurgence of interest in m6a has been spurred by some intriguing findings detailing the ...
N6-methyladenosine (m6A) is the most prevalent internal modification of eukaryotic messenger RNAs (m...
Abstract RNA methylation modification plays a crucial role as an epigenetic regulator in the oncogen...
Abstract Epigenetic abnormalities play a crucial role in many tumors, including glioma. RNA methylat...
Ribosomes are essential nanomachines responsible for all protein production in cells. Ribosome bioge...
Modification of m6A, as the most abundant mRNA modification, plays diverse roles in various biologic...
Abstract First identified in 1974, m6A RNA methylation, which serves as a predominant internal modif...
Abstract RNA modification, like DNA methylation, histone modification, non-coding RNA modification a...
The field of epitranscriptomics encompasses the study of post-transcriptional RNA modifications and ...
Abstract As one of the most studied ribonucleic acid (RNA) modifications in eukaryotes, N6‐methylade...
Over the last five decades more than 100 types of RNA modifications have been identified in organism...
Methylation of the fundamental macromolecules, DNA/RNA, and proteins, is remarkably abundant, evolut...
Abstract N6-methyladenosine (m6A), the most prevalent modification of mammalian RNA, has received in...
RNA methylation modifications have been found for decades of years, which occur at different RNA typ...
RNA N6-methyladenosine (m6A) has been identified as the most common, abundant and conserved internal...
The recent resurgence of interest in m6a has been spurred by some intriguing findings detailing the ...
N6-methyladenosine (m6A) is the most prevalent internal modification of eukaryotic messenger RNAs (m...
Abstract RNA methylation modification plays a crucial role as an epigenetic regulator in the oncogen...
Abstract Epigenetic abnormalities play a crucial role in many tumors, including glioma. RNA methylat...
Ribosomes are essential nanomachines responsible for all protein production in cells. Ribosome bioge...
Modification of m6A, as the most abundant mRNA modification, plays diverse roles in various biologic...