The N6-methyladenosine (m6A) has been shown to regulate stability and translation of messenger RNA (mRNA) in various biological processes. Here, we show that the knockout of the m6A writer Mettl3 or a
N6-methyladenosine (m6A) is the major type of RNA modi'cation that regulates RNA stability and gene expression, characterized by a conserved motif including 5'-(m6A)C-3'. However, the functional signi
N6-methyladenosine RNA (m6A) is the most abundant internal modification on mRNA which influences most steps of mRNA metabolism and is involved in several biological functions, including circadian cloc
DND1 is essential to maintain germ cell identity. Loss of Dnd1 function results in germ cell differentiation to teratomas in some inbred strains of mice or to somatic fates in zebrafish. Using our kno