4jmd Citations

Structural and functional characterization of MppR, an enduracididine biosynthetic enzyme from streptomyces hygroscopicus: functional diversity in the acetoacetate decarboxylase-like superfamily.

Biochemistry 52 4492-506 (2013)
Related entries: 4jm3, 4jmc, 4jme

Cited: 12 times
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Abstract

The nonproteinogenic amino acid enduracididine is a critical component of the mannopeptimycins, cyclic glycopeptide antibiotics with activity against drug-resistant pathogens, including methicillin-resistant Staphylococcus aureus. Enduracididine is produced in Streptomyces hygroscopicus by three enzymes, MppP, MppQ, and MppR. On the basis of primary sequence analysis, MppP and MppQ are pyridoxal 5'-phosphate-dependent aminotransferases; MppR shares a low, but significant, level of sequence identity with acetoacetate decarboxylase. The exact reactions catalyzed by each enzyme and the intermediates involved in the route to enduracididine are currently unknown. Herein, we present biochemical and structural characterization of MppR that demonstrates a catalytic activity for this enzyme and provides clues about its role in enduracididine biosynthesis. Bioinformatic analysis shows that MppR belongs to a previously uncharacterized family within the acetoacetate decarboxylase-like superfamily (ADCSF) and suggests that MppR-like enzymes may catalyze reactions diverging from the well-characterized, prototypical ADCSF decarboxylase activity. MppR shares a high degree of structural similarity with acetoacetate decarboxylase, though the respective quaternary structures differ markedly and structural differences in the active site explain the observed loss of decarboxylase activity. The crystal structure of MppR in the presence of a mixture of pyruvate and 4-imidazolecarboxaldehyde shows that MppR catalyzes the aldol condensation of these compounds and subsequent dehydration. Surprisingly, the structure of MppR in the presence of "4-hydroxy-2-ketoarginine" shows the correct 4R enantiomer of "2-ketoenduracididine" bound to the enzyme. These data, together with bioinformatic analysis of MppR homologues, identify a novel family within the acetoacetate decarboxylase-like superfamily with divergent active site structure and, consequently, biochemical function.

Articles - 4jmd mentioned but not cited (1)

  1. Structural and functional characterization of MppR, an enduracididine biosynthetic enzyme from streptomyces hygroscopicus: functional diversity in the acetoacetate decarboxylase-like superfamily. Burroughs AM, Hoppe RW, Goebel NC, Sayyed BH, Voegtline TJ, Schwabacher AW, Zabriskie TM, Silvaggi NR. Biochemistry 52 4492-4506 (2013)


Reviews citing this publication (7)

  1. Nonribosomal Peptide Synthesis-Principles and Prospects. Süssmuth RD, Mainz A. Angew Chem Int Ed Engl 56 3770-3821 (2017)
  2. Antibiotics from Gram-negative bacteria: a comprehensive overview and selected biosynthetic highlights. Masschelein J, Jenner M, Challis GL. Nat Prod Rep 34 712-783 (2017)
  3. Recent examples of α-ketoglutarate-dependent mononuclear non-haem iron enzymes in natural product biosyntheses. Gao SS, Naowarojna N, Cheng R, Liu X, Liu P. Nat Prod Rep 35 792-837 (2018)
  4. Enduracididine, a rare amino acid component of peptide antibiotics: Natural products and synthesis. Atkinson DJ, Naysmith BJ, Furkert DP, Brimble MA. Beilstein J Org Chem 12 2325-2342 (2016)
  5. Harnessing the biocatalytic potential of iron- and α-ketoglutarate-dependent dioxygenases in natural product total synthesis. Zwick CR, Renata H. Nat Prod Rep 37 1065-1079 (2020)
  6. Chemistry and Biology of Teixobactin. Guo C, Mandalapu D, Ji X, Gao J, Zhang Q. Chemistry 24 5406-5422 (2018)
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  1. Teixobactin kills bacteria by a two-pronged attack on the cell envelope. Shukla R, Lavore F, Maity S, Derks MGN, Jones CR, Vermeulen BJA, Melcrová A, Morris MA, Becker LM, Wang X, Kumar R, Medeiros-Silva J, van Beekveld RAM, Bonvin AMJJ, Lorent JH, Lelli M, Nowick JS, MacGillavry HD, Peoples AJ, Spoering AL, Ling LL, Hughes DE, Roos WH, Breukink E, Lewis K, Weingarth M. Nature 608 390-396 (2022)
  2. Biosynthesis of Guanitoxin Enables Global Environmental Detection in Freshwater Cyanobacteria. Lima ST, Fallon TR, Cordoza JL, Chekan JR, Delbaje E, Hopiavuori AR, Alvarenga DO, Wood SM, Luhavaya H, Baumgartner JT, Dörr FA, Etchegaray A, Pinto E, McKinnie SMK, Fiore MF, Moore BS. J Am Chem Soc 144 9372-9379 (2022)
  3. Utilization of Phenol as Carbon Source by the Thermoacidophilic Archaeon Saccharolobus solfataricus P2 Is Limited by Oxygen Supply and the Cellular Stress Response. Wolf J, Koblitz J, Albersmeier A, Kalinowski J, Siebers B, Schomburg D, Neumann-Schaal M. Front Microbiol 11 587032 (2020)
  4. Mechanistic and Structural Insights into a Divergent PLP-Dependent l-Enduracididine Cyclase from a Toxic Cyanobacterium. Cordoza JL, Chen PY, Blaustein LR, Lima ST, Fiore MF, Chekan JR, Moore BS, McKinnie SMK. ACS Catal 13 9817-9828 (2023)