Literature DB >> 25402768

A peptide ligase and the ribosome cooperate to synthesize the peptide pheganomycin.

Motoyoshi Noike1, Takashi Matsui2, Koichi Ooya1, Ikuo Sasaki1, Shouta Ohtaki2, Yoshimitsu Hamano3, Chitose Maruyama3, Jun Ishikawa4, Yasuharu Satoh1, Hajime Ito1, Hiroyuki Morita2, Tohru Dairi1.   

Abstract

Peptide antibiotics are typically biosynthesized by one of two distinct machineries in a ribosome-dependent or ribosome-independent manner. Pheganomycin (PGM (1)) and related analogs consist of the nonproteinogenic amino acid (S)-2-(3,5-dihydroxy-4-hydroxymethyl)phenyl-2-guanidinoacetic acid (2) and a proteinogenic core peptide, making their origin uncertain. We report the identification of the biosynthetic gene cluster from Streptomyces cirratus responsible for PGM production. Unexpectedly, the cluster contains a gene encoding multiple precursor peptides along with several genes plausibly encoding enzymes for the synthesis of amino acid 2. We identified PGM1, which has an ATP-grasp domain, as potentially capable of linking the precursor peptides with 2, and validate this hypothesis using deletion mutants and in vitro reconstitution. We document PGM1's substrate permissivity, which could be rationalized by a large binding pocket as confirmed via structural and mutagenesis experiments. This is to our knowledge the first example of cooperative peptide synthesis achieved by ribosomes and peptide ligases using a peptide nucleophile.

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Year:  2014        PMID: 25402768     DOI: 10.1038/nchembio.1697

Source DB:  PubMed          Journal:  Nat Chem Biol        ISSN: 1552-4450            Impact factor:   15.040


  43 in total

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9.  Towards automated crystallographic structure refinement with phenix.refine.

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10.  MolProbity: all-atom structure validation for macromolecular crystallography.

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  12 in total

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Journal:  Appl Environ Microbiol       Date:  2015-04-17       Impact factor: 4.792

3.  Three Principles of Diversity-Generating Biosynthesis.

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4.  Nonribosomal Peptide Extension by a Peptide Amino-Acyl tRNA Ligase.

Authors:  Zhengan Zhang; Wilfred A van der Donk
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5.  Roads to Rome: Role of Multiple Cassettes in Cyanobactin RiPP Biosynthesis.

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Authors:  Gengxiang Zhao; Dalibor Kosek; Hong-Bing Liu; Shannon I Ohlemacher; Brittney Blackburne; Anastasia Nikolskaya; Kira S Makarova; Jiadong Sun; Clifton E Barry Iii; Eugene V Koonin; Fred Dyda; Carole A Bewley
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Review 7.  New developments in RiPP discovery, enzymology and engineering.

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8.  Uncovering the unexplored diversity of thioamidated ribosomal peptides in Actinobacteria using the RiPPER genome mining tool.

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10.  A two-trick pony: lysosomal protease cathepsin B possesses surprising ligase activity.

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