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Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry

In contrast to extensively studied prokaryotic ‘small’ transcriptomes (encompassing all small noncoding RNAs), small proteomes (here defined as including proteins ≤70 aa) are only now entering the limelight. The absence of a complete small protein catalogue in most prokaryotes precludes our understa...

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Autores principales: Hadjeras, Lydia, Bartel, Jürgen, Maier, Lisa-Katharina, Maaß, Sandra, Vogel, Verena, Svensson, Sarah L, Eggenhofer, Florian, Gelhausen, Rick, Müller, Teresa, Alkhnbashi, Omer S, Backofen, Rolf, Becher, Dörte, Sharma, Cynthia M, Marchfelder, Anita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10117724/
https://www.ncbi.nlm.nih.gov/pubmed/37223747
http://dx.doi.org/10.1093/femsml/uqad001
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author Hadjeras, Lydia
Bartel, Jürgen
Maier, Lisa-Katharina
Maaß, Sandra
Vogel, Verena
Svensson, Sarah L
Eggenhofer, Florian
Gelhausen, Rick
Müller, Teresa
Alkhnbashi, Omer S
Backofen, Rolf
Becher, Dörte
Sharma, Cynthia M
Marchfelder, Anita
author_facet Hadjeras, Lydia
Bartel, Jürgen
Maier, Lisa-Katharina
Maaß, Sandra
Vogel, Verena
Svensson, Sarah L
Eggenhofer, Florian
Gelhausen, Rick
Müller, Teresa
Alkhnbashi, Omer S
Backofen, Rolf
Becher, Dörte
Sharma, Cynthia M
Marchfelder, Anita
author_sort Hadjeras, Lydia
collection PubMed
description In contrast to extensively studied prokaryotic ‘small’ transcriptomes (encompassing all small noncoding RNAs), small proteomes (here defined as including proteins ≤70 aa) are only now entering the limelight. The absence of a complete small protein catalogue in most prokaryotes precludes our understanding of how these molecules affect physiology. So far, archaeal genomes have not yet been analyzed broadly with a dedicated focus on small proteins. Here, we present a combinatorial approach, integrating experimental data from small protein-optimized mass spectrometry (MS) and ribosome profiling (Ribo-seq), to generate a high confidence inventory of small proteins in the model archaeon Haloferax volcanii. We demonstrate by MS and Ribo-seq that 67% of the 317 annotated small open reading frames (sORFs) are translated under standard growth conditions. Furthermore, annotation-independent analysis of Ribo-seq data showed ribosomal engagement for 47 novel sORFs in intergenic regions. A total of seven of these were also detected by proteomics, in addition to an eighth novel small protein solely identified by MS. We also provide independent experimental evidence in vivo for the translation of 12 sORFs (annotated and novel) using epitope tagging and western blotting, underlining the validity of our identification scheme. Several novel sORFs are conserved in Haloferax species and might have important functions. Based on our findings, we conclude that the small proteome of H. volcanii is larger than previously appreciated, and that combining MS with Ribo-seq is a powerful approach for the discovery of novel small protein coding genes in archaea.
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spelling pubmed-101177242023-05-23 Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry Hadjeras, Lydia Bartel, Jürgen Maier, Lisa-Katharina Maaß, Sandra Vogel, Verena Svensson, Sarah L Eggenhofer, Florian Gelhausen, Rick Müller, Teresa Alkhnbashi, Omer S Backofen, Rolf Becher, Dörte Sharma, Cynthia M Marchfelder, Anita Microlife Research Article In contrast to extensively studied prokaryotic ‘small’ transcriptomes (encompassing all small noncoding RNAs), small proteomes (here defined as including proteins ≤70 aa) are only now entering the limelight. The absence of a complete small protein catalogue in most prokaryotes precludes our understanding of how these molecules affect physiology. So far, archaeal genomes have not yet been analyzed broadly with a dedicated focus on small proteins. Here, we present a combinatorial approach, integrating experimental data from small protein-optimized mass spectrometry (MS) and ribosome profiling (Ribo-seq), to generate a high confidence inventory of small proteins in the model archaeon Haloferax volcanii. We demonstrate by MS and Ribo-seq that 67% of the 317 annotated small open reading frames (sORFs) are translated under standard growth conditions. Furthermore, annotation-independent analysis of Ribo-seq data showed ribosomal engagement for 47 novel sORFs in intergenic regions. A total of seven of these were also detected by proteomics, in addition to an eighth novel small protein solely identified by MS. We also provide independent experimental evidence in vivo for the translation of 12 sORFs (annotated and novel) using epitope tagging and western blotting, underlining the validity of our identification scheme. Several novel sORFs are conserved in Haloferax species and might have important functions. Based on our findings, we conclude that the small proteome of H. volcanii is larger than previously appreciated, and that combining MS with Ribo-seq is a powerful approach for the discovery of novel small protein coding genes in archaea. Oxford University Press 2023-01-16 /pmc/articles/PMC10117724/ /pubmed/37223747 http://dx.doi.org/10.1093/femsml/uqad001 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of FEMS. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Article
Hadjeras, Lydia
Bartel, Jürgen
Maier, Lisa-Katharina
Maaß, Sandra
Vogel, Verena
Svensson, Sarah L
Eggenhofer, Florian
Gelhausen, Rick
Müller, Teresa
Alkhnbashi, Omer S
Backofen, Rolf
Becher, Dörte
Sharma, Cynthia M
Marchfelder, Anita
Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry
title Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry
title_full Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry
title_fullStr Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry
title_full_unstemmed Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry
title_short Revealing the small proteome of Haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry
title_sort revealing the small proteome of haloferax volcanii by combining ribosome profiling and small-protein optimized mass spectrometry
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10117724/
https://www.ncbi.nlm.nih.gov/pubmed/37223747
http://dx.doi.org/10.1093/femsml/uqad001
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