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1.
Int J Mol Sci ; 22(7)2021 Apr 01.
Article in English | MEDLINE | ID: mdl-33915887

ABSTRACT

The methylation of adenosine in the N6 position (m6A) is a widely used modification of eukaryotic mRNAs. Its importance for the regulation of mRNA translation was put forward recently, essentially due to the ability of methylated mRNA to be translated in conditions of inhibited cap-dependent translation initiation, e.g., under stress. However, the peculiarities of translation initiation on m6A-modified mRNAs are not fully known. In this study, we used toeprinting and translation in a cell-free system to confirm that m6A-modified mRNAs can be translated in conditions of suppressed cap-dependent translation. We show for the first time that m6A-modified mRNAs display not only decreased elongation, but also a lower efficiency of translation initiation. Additionally, we report relative resistance of m6A-mRNA translation initiation in the absence of ATP and inhibited eIF4A activity. Our novel findings indicate that the scanning of m6A-modified leader sequences is performed by a noncanonical mechanism.


Subject(s)
Protein Biosynthesis , RNA, Messenger/metabolism , HEK293 Cells , Humans , Methylation
2.
Biochem Biophys Res Commun ; 404(1): 250-3, 2011 Jan 07.
Article in English | MEDLINE | ID: mdl-21114960

ABSTRACT

The 5'-untranslated sequence of tobacco mosaic virus RNA--the so called omega leader--is a well-known translational enhancer. The structure of the omega RNA has unusual features. Despite the absence of extensive secondary structure of the Watson-Crick type, the omega RNA possesses a stable compact conformation. The central part of the omega sequence contains many CAA repeats and is flanked by U-rich regions. In this work we synthesized the polyribonucleotides containing modified omega sequences, and studied them using analytical ultracentrifugation and thermal melting techniques. It was demonstrated that changes made in both the central and the 3'-proximal part of the sequence led to a strong destabilization of the omega RNA structure. We conclude that the regular (CAA)(n) core region and the 3'-proximal AU-rich region of the omega RNA interact with each other and contribute together to the formation of a stable tertiary structure.


Subject(s)
5' Untranslated Regions , Nucleic Acid Conformation , RNA, Viral/chemistry , Tobacco Mosaic Virus/genetics , Tobacco Mosaic Virus/metabolism , Base Sequence , Molecular Sequence Data
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