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Genome mining unveils a class of ribosomal peptides with two amino termini

The era of inexpensive genome sequencing and improved bioinformatics tools has reenergized the study of natural products, including the ribosomally synthesized and post-translationally modified peptides (RiPPs). In recent years, RiPP discovery has challenged preconceptions about the scope of post-tr...

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Autores principales: Ren, Hengqian, Dommaraju, Shravan R., Huang, Chunshuai, Cui, Haiyang, Pan, Yuwei, Nesic, Marko, Zhu, Lingyang, Sarlah, David, Mitchell, Douglas A., Zhao, Huimin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10028931/
https://www.ncbi.nlm.nih.gov/pubmed/36945508
http://dx.doi.org/10.1101/2023.03.08.531785
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author Ren, Hengqian
Dommaraju, Shravan R.
Huang, Chunshuai
Cui, Haiyang
Pan, Yuwei
Nesic, Marko
Zhu, Lingyang
Sarlah, David
Mitchell, Douglas A.
Zhao, Huimin
author_facet Ren, Hengqian
Dommaraju, Shravan R.
Huang, Chunshuai
Cui, Haiyang
Pan, Yuwei
Nesic, Marko
Zhu, Lingyang
Sarlah, David
Mitchell, Douglas A.
Zhao, Huimin
author_sort Ren, Hengqian
collection PubMed
description The era of inexpensive genome sequencing and improved bioinformatics tools has reenergized the study of natural products, including the ribosomally synthesized and post-translationally modified peptides (RiPPs). In recent years, RiPP discovery has challenged preconceptions about the scope of post-translational modification chemistry, but genome mining of new RiPP classes remains an unsolved challenge. Here, we report a RiPP class defined by an unusual (S)-N(2),N(2)-dimethyl-1,2-propanediamine (Dmp)-modified C-terminus, which we term the daptides. Nearly 500 daptide biosynthetic gene clusters (BGCs) were identified by analyzing the RiPP Recognition Element (RRE), a common substrate-binding domain found in half of prokaryotic RiPP classes. A representative daptide BGC from Microbacterium paraoxydans DSM 15019 was selected for experimental characterization. Derived from a C-terminal threonine residue, the class-defining Dmp is installed over three steps by an oxidative decarboxylase, aminotransferase, and methyltransferase. Daptides uniquely harbor two positively charged termini, and thus we suspect this modification could aid in membrane targeting, as corroborated by hemolysis assays. Our studies further show that the oxidative decarboxylation step requires a functionally unannotated accessory protein. Fused to the C-terminus of the accessory protein is an RRE domain, which delivers the unmodified substrate peptide to the oxidative decarboxylase. This discovery of a class-defining post-translational modification in RiPPs may serve as a prototype for unveiling additional RiPP classes through genome mining.
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spelling pubmed-100289312023-03-22 Genome mining unveils a class of ribosomal peptides with two amino termini Ren, Hengqian Dommaraju, Shravan R. Huang, Chunshuai Cui, Haiyang Pan, Yuwei Nesic, Marko Zhu, Lingyang Sarlah, David Mitchell, Douglas A. Zhao, Huimin bioRxiv Article The era of inexpensive genome sequencing and improved bioinformatics tools has reenergized the study of natural products, including the ribosomally synthesized and post-translationally modified peptides (RiPPs). In recent years, RiPP discovery has challenged preconceptions about the scope of post-translational modification chemistry, but genome mining of new RiPP classes remains an unsolved challenge. Here, we report a RiPP class defined by an unusual (S)-N(2),N(2)-dimethyl-1,2-propanediamine (Dmp)-modified C-terminus, which we term the daptides. Nearly 500 daptide biosynthetic gene clusters (BGCs) were identified by analyzing the RiPP Recognition Element (RRE), a common substrate-binding domain found in half of prokaryotic RiPP classes. A representative daptide BGC from Microbacterium paraoxydans DSM 15019 was selected for experimental characterization. Derived from a C-terminal threonine residue, the class-defining Dmp is installed over three steps by an oxidative decarboxylase, aminotransferase, and methyltransferase. Daptides uniquely harbor two positively charged termini, and thus we suspect this modification could aid in membrane targeting, as corroborated by hemolysis assays. Our studies further show that the oxidative decarboxylation step requires a functionally unannotated accessory protein. Fused to the C-terminus of the accessory protein is an RRE domain, which delivers the unmodified substrate peptide to the oxidative decarboxylase. This discovery of a class-defining post-translational modification in RiPPs may serve as a prototype for unveiling additional RiPP classes through genome mining. Cold Spring Harbor Laboratory 2023-03-08 /pmc/articles/PMC10028931/ /pubmed/36945508 http://dx.doi.org/10.1101/2023.03.08.531785 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Ren, Hengqian
Dommaraju, Shravan R.
Huang, Chunshuai
Cui, Haiyang
Pan, Yuwei
Nesic, Marko
Zhu, Lingyang
Sarlah, David
Mitchell, Douglas A.
Zhao, Huimin
Genome mining unveils a class of ribosomal peptides with two amino termini
title Genome mining unveils a class of ribosomal peptides with two amino termini
title_full Genome mining unveils a class of ribosomal peptides with two amino termini
title_fullStr Genome mining unveils a class of ribosomal peptides with two amino termini
title_full_unstemmed Genome mining unveils a class of ribosomal peptides with two amino termini
title_short Genome mining unveils a class of ribosomal peptides with two amino termini
title_sort genome mining unveils a class of ribosomal peptides with two amino termini
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10028931/
https://www.ncbi.nlm.nih.gov/pubmed/36945508
http://dx.doi.org/10.1101/2023.03.08.531785
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