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Search for "natural product biosynthesis" in Full Text gives 12 result(s) in Beilstein Journal of Organic Chemistry.

Chemical structure metagenomics of microbial natural products: surveying nonribosomal peptides and beyond

  • Thomas Ma and
  • John Chu

Beilstein J. Org. Chem. 2024, 20, 3050–3060, doi:10.3762/bjoc.20.253

Graphical Abstract
  • product biosynthesis, along with all the information an organism needs, are encoded in its genome. Genetic information is transcribed and translated into proteins that carry out chemical reactions that sustain life, which include both primary metabolism and the biosynthesis of natural products. Direct
  • it has been isolated via the lengthy iterative purification process guided by bioactivity. Rediscovery is inevitable based on such a workflow, and this is essentially due to our inability to predict the chemical structure ahead of time. Does this have to be the case? The instructions for natural
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Perspective
Published 20 Nov 2024

Chemo-enzymatic total synthesis: current approaches toward the integration of chemical and enzymatic transformations

  • Ryo Tanifuji and
  • Hiroki Oguri

Beilstein J. Org. Chem. 2024, 20, 1693–1712, doi:10.3762/bjoc.20.151

Graphical Abstract
  • substrate–enzyme combinations. The integrative approach of combining intriguing enzymes in ever-evolving biosynthetic research with chemical synthesis, would foster collaborative breakthroughs in the interdisciplinary landscape of natural product biosynthesis, total synthesis as well as function- and
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Review
Published 23 Jul 2024

Methyltransferases from RiPP pathways: shaping the landscape of natural product chemistry

  • Maria-Paula Schröder,
  • Isabel P.-M. Pfeiffer and
  • Silja Mordhorst

Beilstein J. Org. Chem. 2024, 20, 1652–1670, doi:10.3762/bjoc.20.147

Graphical Abstract
  • -translational modifications; ribosomal peptides; SAM-dependent enzymes; Introduction In the complex landscape of natural product biosynthesis, ribosomally synthesised and post-translationally modified peptides (RiPPs) stand out as a fascinating class of compounds with both structural diversity and unique
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Review
Published 18 Jul 2024

Polymer degrading marine Microbulbifer bacteria: an un(der)utilized source of chemical and biocatalytic novelty

  • Weimao Zhong and
  • Vinayak Agarwal

Beilstein J. Org. Chem. 2024, 20, 1635–1651, doi:10.3762/bjoc.20.146

Graphical Abstract
  • typical Microbulbifer genome contains less than ten BGCs, as identified by antiSMASH, which implies that a large fraction of their genome is not devoted to natural product biosynthesis. The bulbiferamides and the pseudobulbiferamides represent the first and to date the only examples of peptidic natural
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Published 17 Jul 2024

Chemoenzymatic synthesis of macrocyclic peptides and polyketides via thioesterase-catalyzed macrocyclization

  • Senze Qiao,
  • Zhongyu Cheng and
  • Fuzhuo Li

Beilstein J. Org. Chem. 2024, 20, 721–733, doi:10.3762/bjoc.20.66

Graphical Abstract
  • -product biosynthesis and combinatorial solid-phase chemistry, this strategy has expanded the sequence space of macrocyclic peptides significantly (Scheme 2c). The daptomycins The calcium-dependent antibiotic (CDA, 11), daptomycin (12), and A54145 are acidic lipopeptides isolated from Streptomycetes, which
  • biomimetic linker to imitate peptide-S-PCP [46], which not only employed in the efficient cyclization of tyrocidine A (1) but also worked on hundreds of other linear substrates, some of which exhibited broad-spectrum activity against both Gram-positive and Gram-negative organisms. By combining natural
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Published 04 Apr 2024

Navigating and expanding the roadmap of natural product genome mining tools

  • Friederike Biermann,
  • Sebastian L. Wenski and
  • Eric J. N. Helfrich

Beilstein J. Org. Chem. 2022, 18, 1656–1671, doi:10.3762/bjoc.18.178

Graphical Abstract
  • combination of all genome mining approaches will pave the way towards a more comprehensive understanding of the full biosynthetic repertoire encoded in microbial genome sequences. Keywords: genome mining; natural product biosynthesis; non-canonical pathways; PKS; NRPS; RiPP; Introduction In 2002, the genome
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Perspective
Published 06 Dec 2022

Enzymes in biosynthesis

  • Jeroen S. Dickschat

Beilstein J. Org. Chem. 2022, 18, 1131–1132, doi:10.3762/bjoc.18.116

Graphical Abstract
  • -Institut for their professional support. I wish the readers of this issue some stimulating new insights into enzyme research in natural product biosynthesis. Jeroen S. Dickschat Bonn, August 2022
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Editorial
Published 30 Aug 2022

α-Ketol and α-iminol rearrangements in synthetic organic and biosynthetic reactions

  • Scott Benz and
  • Andrew S. Murkin

Beilstein J. Org. Chem. 2021, 17, 2570–2584, doi:10.3762/bjoc.17.172

Graphical Abstract
  • continued development in these areas can be expected in the coming years. It is becoming apparent that nature also utilizes these rearrangements in natural product biosynthesis, and one might expect to see an increase in the discovery of enzymes governing these reactions. Generalized α-ketol or α-iminol
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Published 15 Oct 2021

Isolation and characterization of new phenolic siderophores with antimicrobial properties from Pseudomonas sp. UIAU-6B

  • Emmanuel T. Oluwabusola,
  • Olusoji O. Adebisi,
  • Fernando Reyes,
  • Kojo S. Acquah,
  • Mercedes De La Cruz,
  • Larry L. Mweetwa,
  • Joy E. Rajakulendran,
  • Digby F. Warner,
  • Deng Hai,
  • Rainer Ebel and
  • Marcel Jaspars

Beilstein J. Org. Chem. 2021, 17, 2390–2398, doi:10.3762/bjoc.17.156

Graphical Abstract
  • hypotheses not previously reported in natural product biosynthesis. Experimental General experimental procedures IR spectra were acquired on a Perkin Elmer Spectrum Two FT-IR spectrometer equipped with an ATR diamond cell. Optical rotations were measured on an ADP 410 digital Polarimeter (Bellingham
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Full Research Paper
Published 13 Sep 2021

Sulfation and amidinohydrolysis in the biosynthesis of giant linear polyenes

  • Hui Hong,
  • Markiyan Samborskyy,
  • Katsiaryna Usachova,
  • Katharina Schnatz and
  • Peter F. Leadlay

Beilstein J. Org. Chem. 2017, 13, 2408–2415, doi:10.3762/bjoc.13.238

Graphical Abstract
  • before or after the specific sulfonation step. The sequence of the sulfotransferase is a useful probe to uncover related gene clusters in public sequence databases. Sulfonation remains a rare and relatively poorly understood modification in natural product biosynthesis [27][28][29][30]. As our
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Published 13 Nov 2017

Antibiotics from predatory bacteria

  • Juliane Korp,
  • María S. Vela Gurovic and
  • Markus Nett

Beilstein J. Org. Chem. 2016, 12, 594–607, doi:10.3762/bjoc.12.58

Graphical Abstract
  • possess impressive capacities for natural product biosynthesis. Here, we will present the results from recent chemical investigations of this bacterial group, compare the biosynthetic potential with that of non-predatory bacteria and discuss the link between predation and secondary metabolism. Keywords
  • , it becomes obvious that the Cystobacterineae strains consistently possess more biosynthesis gene clusters per Mbp of DNA than the analyzed Sorangiineae and that they also devote a larger percentage of their total nucleotides to natural product biosynthesis. Noteworthy in this context, the genera
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Published 30 Mar 2016

Heronapyrrole D: A case of co-inspiration of natural product biosynthesis, total synthesis and biodiscovery

  • Jens Schmidt,
  • Zeinab Khalil,
  • Robert J. Capon and
  • Christian B. W. Stark

Beilstein J. Org. Chem. 2014, 10, 1228–1232, doi:10.3762/bjoc.10.121

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Letter
Published 26 May 2014
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