SummaryProtein translation typically begins with the recruitment of the 43S ribosomal complex to the 5′ cap of mRNAs by a cap-binding complex. However, some transcripts are translated in a cap-independent manner through poorly understood mechanisms. Here, we show that mRNAs containing N6-methyladenosine (m6A) in their 5′ UTR can be translated in a cap-independent manner. A single 5′ UTR m6A directly binds eukaryotic initiation factor 3 (eIF3), which is sufficient to recruit the 43S complex to initiate translation in the absence of the cap-binding factor eIF4E. Inhibition of adenosine methylation selectively reduces translation of mRNAs containing 5′UTR m6A. Additionally, increased m6A levels in the Hsp70 mRNA regulate its cap-independent tr...
Methyl-7-guanosine (m7G) "capping" of coding and some noncoding RNAs is critical for their maturatio...
Despite its discovery in the early 1970s, m(6)A modification within mRNA molecules has only powerful...
SummaryN6-methyladenosine (m6A) is a common modification of mRNA with potential roles in fine-tuning...
SummaryProtein translation typically begins with the recruitment of the 43S ribosomal complex to the...
The scanning model for eukaryotic mRNA translation initiation states that the small ribosomal subuni...
Two studies by Meyer et al. and Wang et al. demonstrate a role for m6A modification of mRNA in stimu...
Extensive pre-mRNA back-splicing generates numerous circular RNAs (circRNAs) in human transcriptome....
Extensive pre-mRNA back-splicing generates numerous circular RNAs (circRNAs) in human transcriptome....
Translational control is frequently exerted at the stage of mRNA recruitment to the initiating ribos...
During unfavorable cellular conditions (e.g., tumor hypoxia, viral infection, nutrient deprivation, ...
Twomainmechanisms for eukaryotic initiation of protein synthesis have been described – the canonical...
AbstractWe have previously shown that translation driven by the 5′ UTR of Apaf-1 mRNA is relatively ...
Transcription and translation are two main pillars of gene expression. Due to the different timings,...
Post-transcriptional methylation of N6- and N1-adenine can effect transcriptome turnover and transla...
The impact of local structure on mRNA translation is not well-defined pertaining to the 5′ UTR. Repo...
Methyl-7-guanosine (m7G) "capping" of coding and some noncoding RNAs is critical for their maturatio...
Despite its discovery in the early 1970s, m(6)A modification within mRNA molecules has only powerful...
SummaryN6-methyladenosine (m6A) is a common modification of mRNA with potential roles in fine-tuning...
SummaryProtein translation typically begins with the recruitment of the 43S ribosomal complex to the...
The scanning model for eukaryotic mRNA translation initiation states that the small ribosomal subuni...
Two studies by Meyer et al. and Wang et al. demonstrate a role for m6A modification of mRNA in stimu...
Extensive pre-mRNA back-splicing generates numerous circular RNAs (circRNAs) in human transcriptome....
Extensive pre-mRNA back-splicing generates numerous circular RNAs (circRNAs) in human transcriptome....
Translational control is frequently exerted at the stage of mRNA recruitment to the initiating ribos...
During unfavorable cellular conditions (e.g., tumor hypoxia, viral infection, nutrient deprivation, ...
Twomainmechanisms for eukaryotic initiation of protein synthesis have been described – the canonical...
AbstractWe have previously shown that translation driven by the 5′ UTR of Apaf-1 mRNA is relatively ...
Transcription and translation are two main pillars of gene expression. Due to the different timings,...
Post-transcriptional methylation of N6- and N1-adenine can effect transcriptome turnover and transla...
The impact of local structure on mRNA translation is not well-defined pertaining to the 5′ UTR. Repo...
Methyl-7-guanosine (m7G) "capping" of coding and some noncoding RNAs is critical for their maturatio...
Despite its discovery in the early 1970s, m(6)A modification within mRNA molecules has only powerful...
SummaryN6-methyladenosine (m6A) is a common modification of mRNA with potential roles in fine-tuning...