Posttranslational Modifications during Natural Product Biosynthesis
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1.Compositions and methods for dehydration and cyclization of peptides,synthetic compounds,and lantibiotics
- 发明人:UNIVERSITY OF ILLINOIS AT URBANA-CHAMPAIGN;
- 授权日:}
- 专利
2.Class I and II lantibiotics from geobacillus thermodenitrificans
- 发明人:UNIVERSITY OF ILLINOIS AT URBANA-CHAMPAIGN;
- 授权日:}
- 专利
3.Nonribosomal Peptide Extension by a Peptide Amino-Acyl tRNA Ligase
- Zhang,Zhengan;van der Donk,Wilfred A;
- 《Journal of the American Chemical Society》
- 2019年
- 141卷
- 50期
- 期刊
4.Characterization of a Dehydratase and Methyltransferase in the Biosynthesis of Ribosomally Synthesized and Post-translationally Modified Peptides in Lachnospiraceae
- 关键词:
- dehydration; lanthipeptides; methyltransferases; PTMs; RiPPs;IN-VITRO; HETEROLOGOUS EXPRESSION; ESCHERICHIA-COLI; ENTEROCOCCALCYTOLYSIN; MINING REVEALS; GENE CLUSTERS; LANTIBIOTICS; LACTICIN-481;DIVERSITY; LANTHIPEPTIDES
- Huo, Liujie;Zhao, Xiling;Acedo, Jeella Z.;Estrada, Paola;Nair, Satish K.;van der Donk, Wilfred A.
- 《CHEMBIOCHEM》
- 2019年
- 21卷
- 1-2期
- 期刊
As a result of the exponential increase in genomic data, discovery of novel ribosomally synthesized and post-translationally modified peptide natural products (RiPPs) has progressed rapidly in the past decade. The lanthipeptides are a major subset of RiPPs. Through genome mining we identified a novel lanthipeptide biosynthetic gene cluster (lah) from Lachnospiraceae bacterium C6A11, an anaerobic bacterium that is a member of the human microbiota and which is implicated in the development of host disease states such as type 2 diabetes and resistance to Clostridium difficile colonization. The lah cluster encodes at least seven putative precursor peptides and multiple post-translational modification (PTM) enzymes. Two unusual class II lanthipeptide synthetases LahM1/M2 and a substrate-tolerant S-adenosyl-l-methionine (SAM)-dependent methyltransferase LahS(B) are biochemically characterized in this study. We also present the crystal structure of LahS(B) in complex with product S-adenosylhomocysteine. This study sets the stage for further exploration of the final products of the lah pathway as well as their potential physiological functions in human/animal gut microbiota.
...5.Characterization of glutamyl-tRNA-dependent dehydratases using nonreactive substrate mimics
- Bothwell,Ian R;Cogan,Dillon P;Kim,Terry;Reinhardt,Christopher J;van der Donk,Wilfred A;Nair,Satish K;
- 《Proceedings of the National Academy of Sciences of the United States of America》
- 2019年
- 116卷
- 35期
- 期刊
6.Use of a scaffold peptide in the biosynthesis of amino acid-derived natural products
- 关键词:
- CARRIER-PROTEIN; INSIGHTS; INTERMEDIATE; COMPLEX; TOOL
- Ting, Chi P.;Funk, Michael A.;Halaby, Steve L.;Zhang, Zhengan;Gonen, Tamir;van der Donk, Wilfred A.
- 《SCIENCE》
- 2019年
- 365卷
- 6450期
- 期刊
Genome sequencing of environmental bacteria allows identification of biosynthetic gene clusters encoding unusual combinations of enzymes that produce unknown natural products. We identified a pathway in which a ribosomally synthesized small peptide serves as a scaffold for nonribosomal peptide extension and chemical modification. Amino acids are transferred to the carboxyl terminus of the peptide through adenosine triphosphate and amino acyl-tRNA-dependent chemistry that is independent of the ribosome. Oxidative rearrangement, carboxymethylation. and proteolysis of a terminal cysteine yields an amino acid-derived small molecule. Microcrystal electron diffraction demonstrates that the resulting product is isosteric to glutamate. We show that a similar peptide extension is used during the biosynthesis of the ammosamides, which are cytotoxic pyrroloquinoline alkaloids. These results suggest an alternative paradigm for biosynthesis of amino acid-derived natural products.
...7.Assessing the Flexibility of the Prochlorosin 2.8 Scaffold for Bioengineering Applications
- Hegemann,Julian D;Bobeica,Silvia C;Walker,Mark C;Bothwell,Ian R;van der Donk,Wilfred A;
- 《ACS synthetic biology》
- 2019年
- 8卷
- 5期
- 期刊
8.CylA is a sequence-specific protease involved in toxin biosynthesis
- 关键词:
- PEPTIDE NATURAL-PRODUCTS; IN-VITRO BIOSYNTHESIS; ENTEROCOCCAL CYTOLYSIN; SUBSTRATE-SPECIFICITY; LANTIBIOTICS; EXPRESSION; DISCOVERY; LEADER; HALODURACIN; PROTEINS
- Tang, Weixin;Bobeica, Silvia C.;Wang, Li;van der Donk, Wilfred A.
- 《JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY》
- 2019年
- 46卷
- 3-4期
- 期刊
CylA is a subtilisin-like protein belonging to a recently expanded serine protease family related to class II lanthipeptide biosynthesis. As a leader peptidase, CylA is responsible for maturation of the enterococcal cytolysin, a lantibiotic important for Enterococcus faecalis virulence. In vitro reconstitution of CylA reveals that it accepts both linear and modified cytolysin peptides with a preference for cyclized peptides. Further characterization indicates that CylA activates itself by removing its N-terminal 95 amino acids. CylA achieves sequence-specific traceless cleavage of non-cognate peptides even if they are post-translationally modified, which makes the peptidase a powerful tool for mining novel lanthipeptides by providing a general strategy for leader peptide removal. Knowledge about the substrate specificity of CylA may also facilitate the development of protease inhibitors targeting cytolysin biosynthesis as a potential therapeutic approach for enterococcal infections.
...9.Substrate-assisted enzymatic formation of lysinoalanine in duramycin
- 关键词:
- MOLECULAR-DYNAMICS SIMULATIONS; BIOSYNTHETIC GENE-CLUSTER; ATOMICCHARGES; CINNAMYCIN; MODEL; PHOSPHATIDYLETHANOLAMINE; REFINEMENT;TRANSPORT; SOFTWARE; REFMAC5
- An, Linna;Cogan, Dillon P.;Navo, Claudio D.;Jimenez-Oses, Gonzalo;Nair, Satish K.;van der Donk, Wilfred A.
- 《NATURE CHEMICAL BIOLOGY》
- 2018年
- 14卷
- 10期
- 期刊
Duramycin is a heavily post-translationally modified peptide that binds phosphatidylethanolamine. It has been investigated as an antibiotic, an inhibitor of viral entry, a therapeutic for cystic fibrosis, and a tumor and vasculature imaging agent. Duramycin contains a beta-hydroxylated Asp (Hya) and four macrocycles, including an essential lysinoalanine (Lal) cross-link. The mechanism of Lal formation is not known. Here we show that Lal is installed stereospecifically by DurN via addition of Lys19 to a dehydroalanine. The structure of DurN reveals an unusual dimer with a new fold. Surprisingly, in the structure of duramycin bound to DurN, no residues of the enzyme are near the Lal cross-link. Instead, Hya15 of the substrate makes interactions with Lal, suggesting it acts as a base to deprotonate Lys19 during catalysis. Biochemical data suggest that DurN preorganizes the reactive conformation of the substrate, such that the Hya15 of the substrate can serve as the catalytic base for Lal formation.
...10.Investigation of Substrate Recognition and Biosynthesis in Class IV Lanthipeptide Systems
- 关键词:
- NISIN LEADER PEPTIDE; NATURAL-PRODUCT BIOSYNTHESIS;INDEPENDENT-MUTAGENESIS SLIM; MODIFICATION ENZYMES NISB; AMINO-ACIDSUBSTITUTIONS; THIOETHER BOND FORMATION; LANTIBIOTIC DEHYDRATASE; LASSOPEPTIDES; GENE-CLUSTER; PROTEIN
- Hegemann, Julian D.;van der Donk, Wilfred A.
- 《JOURNAL OF THE AMERICAN CHEMICAL SOCIETY》
- 2018年
- 140卷
- 17期
- 期刊
Lanthipeptides belong to the family of ribosomally synthesized and post-translationally modified peptides (RiPPs) and are subdivided into four classes. The first two classes have been heavily studied, but less is known about classes III and N. The lanthipeptide synthetases of classes III and IV share a similar organization of protein domains: A lyase domain at the N-terminus, a central kinase domain, and a C-terminal cyclase domain. Here, we provide deeper insight into class IV enzymes (LanLs). A series of putative producer strains was screened to identify production conditions of four new venezuelin-like lanthipeptides, and an Escherichia coli based heterologous production system was established for a fifth. The latter not only allowed production of fully modified core peptide but was also employed as the basis for mutational analysis of the precursor peptide to identify regions important for enzyme recognition. These experiments were complemented by in vitro binding studies aimed at identifying the region of the leader peptide recognized by the LanL enzymes as well as determining which domain of the enzyme is recognizing the substrate peptide. Combined, these studies revealed that the kinase domain is mediating the interaction with the precursor peptide and that a putatively a-helical stretch of residues at the center to N-terminal region of the leader peptide is important for enzyme recognition. In addition, a combination of in vitro assays and tandem mass spectrometry was used to elucidate the order of dehydration events in these systems.
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