Biosynthesis of the sactipeptide Ruminococcin C by the human microbiome: Mechanistic insights into thioether bond formation by radical SAM enzymes

被引:21
作者
Balty, Clemence [1 ]
Guillot, Alain [1 ]
Fradale, Laura [1 ]
Brewee, Clemence [1 ]
Lefranc, Benjamin [2 ]
Herrero, Christian [3 ]
Sandstrom, Corine [4 ]
Leprince, Jerome [2 ]
Berteau, Olivier [1 ]
Benjdia, Alhosna [1 ]
机构
[1] Univ Paris Saclay, INRAE, ChemSyBio, Micalis Inst,AgroParisTech, Jouy En Josas, France
[2] Univ Normandie Rouen, PRIMACEN, INSERM, U1239, Rouen, France
[3] Univ Paris Saclay, CNRS, ICMMO, Orsay, France
[4] Swedish Univ Agr Sci, Uppsala BioCtr, Dept Mol Sci, Uppsala, Sweden
基金
欧洲研究理事会;
关键词
radical SAM enzyme; radical AdoMet enzyme; antimicrobial peptide; microbiota; microbiome; antibiotics; enzyme; peptide biosynthesis; RiPP; ruminococcin C; RumC; sactipeptide; antimicrobial peptide (AMP); metalloenzyme; radical; enzyme catalysis; S-ADENOSYLMETHIONINE PROTEIN; SULFATASE-MATURATING ENZYMES; TRYPTOPHAN LYASE NOSL; H-ATOM ABSTRACTION; GENE-CLUSTER; THURINCIN H; X-RAY; PEPTIDE; DOMAIN; BACTERIOCIN;
D O I
10.1074/jbc.RA120.015371
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Despite its major importance in human health, the metabolic potential of the human gut microbiota is still poorly understood. We have recently shown that biosynthesis of Ruminococcin C (RumC), a novel ribosomally synthesized and posttranslationally modified peptide (RiPP) produced by the commensal bacterium Ruminococcus gnavus, requires two radical SAM enzymes (RumMC1 and RumMC2) catalyzing the formation of four C-alpha-thioether bridges. These bridges, which are essential for RumC's antibiotic properties against human pathogens such as Clostridium perfringens, define two hairpin domains giving this sactipeptide (sulfur-to-alpha-carbon thioether-containing peptide) an unusual architecture among natural products. We report here the biochemical and spectroscopic characterizations of RumMC2. EPR spectroscopy and mutagenesis data support that RumMC2 is a member of the large family of SPASM domain radical SAM enzymes characterized by the presence of three [4Fe-4S] clusters. We also demonstrate that this enzyme initiates its reaction by C-alpha H-atom abstraction and is able to catalyze the formation of nonnatural thioether bonds in engineered peptide substrates. Unexpectedly, our data support the formation of a ketoimine rather than an alpha,beta-dehydro-amino acid intermediate during C-alpha-thioether bridge LC-MS/MS fragmentation. Finally, we explored the roles of the leader peptide and of the RiPP precursor peptide recognition element, present in myriad RiPP-modifying enzymes. Collectively, our data support a more complex role for the peptide recognition element and the core peptide for the installation of posttranslational modifications in RiPPs than previously anticipated and suggest a possible reaction intermediate for thioether bond formation.
引用
收藏
页码:16665 / 16677
页数:13
相关论文
共 58 条
[1]   The Human Microbiome [J].
Balskus, Emily P. .
ACS INFECTIOUS DISEASES, 2018, 4 (01) :1-2
[2]   Ruminococcin C, an anti-clostridial sactipeptide produced by a prominent member of the human microbiota Ruminococcus gnavus [J].
Balty, Clemence ;
Guillot, Alain ;
Fradale, Laura ;
Brewee, Clemence ;
Boulay, Mylene ;
Kubiak, Xavier ;
Benjdia, Alhosna ;
Berteau, Olivier .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2019, 294 (40) :14512-14525
[3]   X-ray and EPR Characterization of the Auxiliary Fe-S Clusters in the Radical SAM Enzyme PqqE [J].
Barr, Ian ;
Stich, Troy A. ;
Gizzi, Anthony S. ;
Grove, Tyler L. ;
Bonanno, Jeffrey B. ;
Latham, John A. ;
Chung, Tyler ;
Wilmot, Carrie M. ;
Britt, R. David ;
Almo, Steven C. ;
Klinman, Judith P. .
BIOCHEMISTRY, 2018, 57 (08) :1306-1315
[4]   Anaerobic sulfatase-maturating enzymes, first dual substrate radical S-adenosylmethionine enzymes [J].
Benjdia, Alhosna ;
Subramanian, Sowmya ;
Leprince, Jerome ;
Vaudry, Hubert ;
Johnson, Michael K. ;
Berteau, Olivier .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (26) :17815-17826
[5]   Anaerobic sulfatase-maturating enzymes: Radical SAM enzymes able to catalyze in vitro sulfatase post-translational modification [J].
Benjdia, Alhosna ;
Leprince, Jerome ;
Guillot, Alain ;
Vaudry, Hubert ;
Rabot, Sylvie ;
Berteau, Olivier .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (12) :3462-+
[6]   First evidences for a third sulfatase maturation system in prokaryotes from E-coli aslB and ydeM deletion mutants [J].
Benjdia, Alhosna ;
Deho, Gianni ;
Rabot, Sylvie ;
Berteau, Olivier .
FEBS LETTERS, 2007, 581 (05) :1009-1014
[7]   Radical SAM Enzymes in the Biosynthesis of Ribosomally Synthesized and Post-translationally Modified Peptides (RiPPs) [J].
Benjdia, Alhosna ;
Balty, Clemence ;
Berteau, Olivier .
FRONTIERS IN CHEMISTRY, 2017, 5
[8]   Insights into the catalysis of a lysine-tryptophan bond in bacterial peptides by a SPASM domain radical S-adenosylmethionine (SAM) peptide cyclase [J].
Benjdia, Alhosna ;
Decamps, Laure ;
Guillot, Alain ;
Kubiak, Xavier ;
Ruffie, Pauline ;
Sandstrom, Corine ;
Berteau, Olivier .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2017, 292 (26) :10835-10844
[9]  
Benjdia A, 2017, NAT CHEM, V9, P698, DOI [10.1038/NCHEM.2714, 10.1038/nchem.2714]
[10]   Thioether bond formation by SPASM domain radical SAM enzymes: Cα H-atom abstraction in subtilosin A biosynthesis [J].
Benjdia, Alhosna ;
Guillot, Alain ;
Lefranc, Benjamin ;
Vaudry, Hubert ;
Leprince, Jerome ;
Berteau, Olivier .
CHEMICAL COMMUNICATIONS, 2016, 52 (37) :6249-6252