Light-Dependent Translation Change of Arabidopsis psbA Correlates with RNA Structure Alterations at the Translation Initiation Region

Author:

Gawroński PiotrORCID,Enroth ChristelORCID,Kindgren PeterORCID,Marquardt SebastianORCID,Karpiński StanisławORCID,Leister DarioORCID,Jensen PoulORCID,Vinther JeppeORCID,Scharff LarsORCID

Abstract

mRNA secondary structure influences translation. Proteins that modulate the mRNA secondary structure around the translation initiation region may regulate translation in plastids. To test this hypothesis, we exposed Arabidopsis thaliana to high light, which induces translation of psbA mRNA encoding the D1 subunit of photosystem II. We assayed translation by ribosome profiling and applied two complementary methods to analyze in vivo RNA secondary structure: DMS-MaPseq and SHAPE-seq. We detected increased accessibility of the translation initiation region of psbA after high light treatment, likely contributing to the observed increase in translation by facilitating translation initiation. Furthermore, we identified the footprint of a putative regulatory protein in the 5′ UTR of psbA at a position where occlusion of the nucleotide sequence would cause the structure of the translation initiation region to open up, thereby facilitating ribosome access. Moreover, we show that other plastid genes with weak Shine-Dalgarno sequences (SD) are likely to exhibit psbA-like regulation, while those with strong SDs do not. This supports the idea that changes in mRNA secondary structure might represent a general mechanism for translational regulation of psbA and other plastid genes.

Funder

Narodowe Centrum Nauki

H2020 European Research Council

H2020 Marie Skłodowska-Curie Actions

Novo Nordisk Fonden

Deutsche Forschungsgemeinschaft

Danmarks Frie Forskningsfond

Villum Fonden

Publisher

MDPI AG

Subject

General Medicine

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