Transcript-wide m6A methylation defines the efficiency of cap-independent translation initiation

N⁶-methyladenosine (m⁶A) plays an important role in translation control and, particularly, in cap-independent initiation. The impact of m⁶A is usually studied in the context of its location in the transcripts, but the global impact of m⁶A along mRNAs remains unclear. Here, we combined ribosome profiling under conditions of mTOR inhibition and m⁶A mapping to identify distinct subsets of mRNAs that differ in their sensitivity to the suppression of cap-dependent initiation. We found that the sensitivity strongly correlated with the total m⁶A methylation of the transcripts. Further, upon decreased mTOR activity, m⁶A methylation facilitated the enhanced association of mRNAs with components of the eIF4F complex. Thus, the efficiency of cap-independent translation initiation is primarily defined not by precise localization but by the total level of m⁶A methylation, and m⁶A has a compensatory role in maintaining translation when the canonical cap-dependent pathway is impaired. Our findings underscore the significance of contemplating global m⁶A methylation status as a pivotal element in translational control, particularly under stress or signaling perturbations.

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Publication Details

Journal
RNA
Published
2026-09-17
DOI
https://doi.org/10.1261/rna.081017.126
Primary Topic
RNA modifications and cancer
Type
article
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article

Transcript-wide m6A methylation defines the efficiency of cap-independent translation initiation

Irina A. Eliseeva, Dmitry N. Lyabin, Egor A. Smolin, Andrey Buyan et al.
RNA
RNA modifications and cancer
article

Transcript-wide m6A methylation defines the efficiency of cap-independent translation initiation

Irina A. Eliseeva, Dmitry N. Lyabin, Egor A. Smolin, Andrey Buyan, Ivan V. Kulakovskiy, Anton A Buzdin
article en

Abstract

N⁶-methyladenosine (m⁶A) plays an important role in translation control and, particularly, in cap-independent initiation. The impact of m⁶A is usually studied in the context of its location in the transcripts, but the global impact of m⁶A along mRNAs remains unclear. Here, we combined ribosome profiling under conditions of mTOR inhibition and m⁶A mapping to identify distinct subsets of mRNAs that differ in their sensitivity to the suppression of cap-dependent initiation. We found that the sensitivity strongly correlated with the total m⁶A methylation of the transcripts. Further, upon decreased mTOR activity, m⁶A methylation facilitated the enhanced association of mRNAs with components of the eIF4F complex. Thus, the efficiency of cap-independent translation initiation is primarily defined not by precise localization but by the total level of m⁶A methylation, and m⁶A has a compensatory role in maintaining translation when the canonical cap-dependent pathway is impaired. Our findings underscore the significance of contemplating global m⁶A methylation status as a pivotal element in translational control, particularly under stress or signaling perturbations.

RNA
Sechenov University (RU), Institute of Protein Research (RU)
Openalex Percentile: Top 18%
RNA modifications and cancer
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