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Transcript Regulation of the Recoded Archaeal α-l-Fucosidase In Vivo

Authors :
Federica De Lise
Roberta Iacono
Andrea Strazzulli
Rosa Giglio
Nicola Curci
Luisa Maurelli
Rosario Avino
Antonio Carandente
Stefano Caliro
Alessandra Tortora
Fabio Lorenzini
Paola Di Donato
Marco Moracci
Beatrice Cobucci-Ponzano
Source :
Molecules, Vol 26, Iss 7, p 1861 (2021)
Publication Year :
2021
Publisher :
MDPI AG, 2021.

Abstract

Genetic decoding is flexible, due to programmed deviation of the ribosomes from standard translational rules, globally termed “recoding”. In Archaea, recoding has been unequivocally determined only for termination codon readthrough events that regulate the incorporation of the unusual amino acids selenocysteine and pyrrolysine, and for −1 programmed frameshifting that allow the expression of a fully functional α-l-fucosidase in the crenarchaeon Saccharolobus solfataricus, in which several functional interrupted genes have been identified. Increasing evidence suggests that the flexibility of the genetic code decoding could provide an evolutionary advantage in extreme conditions, therefore, the identification and study of interrupted genes in extremophilic Archaea could be important from an astrobiological point of view, providing new information on the origin and evolution of the genetic code and on the limits of life on Earth. In order to shed some light on the mechanism of programmed −1 frameshifting in Archaea, here we report, for the first time, on the analysis of the transcription of this recoded archaeal α-l-fucosidase and of its full-length mutant in different growth conditions in vivo. We found that only the wild type mRNA significantly increased in S. solfataricus after cold shock and in cells grown in minimal medium containing hydrolyzed xyloglucan as carbon source. Our results indicated that the increased level of fucA mRNA cannot be explained by transcript up-regulation alone. A different mechanism related to translation efficiency is discussed.

Details

Language :
English
ISSN :
14203049
Volume :
26
Issue :
7
Database :
Directory of Open Access Journals
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
edsdoj.2c6f2d6a1c4842fe88e443fe6a0f13b0
Document Type :
article
Full Text :
https://doi.org/10.3390/molecules26071861