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

Lydia Hadjeras, Jürgen Bartel, Lisa Katharina Maier, Sandra Maaß, Verena Vogel, Sarah L. Svensson, Florian Eggenhofer, Rick Gelhausen, Teresa Müller, Omer S. Alkhnbashi, Rolf Backofen, Dörte Becher, Cynthia M. Sharma, Anita Marchfelder*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

16 Scopus citations

Abstract

In contrast to extensively studied prokaryotic 'small' transcriptomes (encompassing all small noncoding RNAs), small proteomes (here defned 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 profling (Ribo-seq), to generate a high confdence 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 identifed 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 identifcation scheme. Several novel sORFs are conserved in Haloferax species and might have important functions. Based on our fndings, 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.

Original languageEnglish
Article numberuqad001
JournalMicroLife
Volume4
DOIs
StatePublished - 2023

Bibliographical note

Publisher Copyright:
© The Author(s) 2023.

Keywords

  • Haloferax volcanii
  • Ribo-seq
  • archaea
  • mass spectrometry
  • proteomics
  • ribosome profling
  • sORF
  • small protein
  • small proteome
  • sprotein

ASJC Scopus subject areas

  • General Immunology and Microbiology

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