Literature DB >> 11456620

Stereochemical elucidation and total synthesis of dihydropacidamycin D, a semisynthetic pacidamycin.

C G Boojamra1, R C Lemoine, J C Lee, R Léger, K A Stein, N G Vernier, A Magon, O Lomovskaya, P K Martin, S Chamberland, M D Lee, S J Hecker, V J Lee.   

Abstract

Hydrogenation of the C(4') exocyclic olefin of the pacidamycins has been shown to produce a series of semisynthetic compounds, the dihydropacidamycins, with antimicrobial activity similar to that of the natural products. Elucidation of stereochemistry in the pacidamycins has been completed through a campaign of natural product degradation experiments in combination with the total synthesis of the lowest-molecular weight dihydropacidamycin, dihydropacidamycin D. The stereochemical identities of the tryptophan and two alanine residues contained in pacidamycin D have been shown to be of the natural (S) configuration, and the unique 3-methylamino-2-aminobutyric acid contained in this series of antibiotics has been shown to be of the (2S,3S) configuration. Finally, the stereochemistry obtained by hydrogenation of the C(4')-C(5') exocyclic olefin has been shown to be (R) at the C(4') nucleoside site.

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Year:  2001        PMID: 11456620     DOI: 10.1021/ja003292c

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  11 in total

1.  Solid-phase synthesis and biological evaluation of a uridinyl branched peptide urea library.

Authors:  Dianqing Sun; Victoria Jones; Elizabeth I Carson; Robin E B Lee; Michael S Scherman; Michael R McNeil; Richard E Lee
Journal:  Bioorg Med Chem Lett       Date:  2007-10-04       Impact factor: 2.823

2.  Nine enzymes are required for assembly of the pacidamycin group of peptidyl nucleoside antibiotics.

Authors:  Wenjun Zhang; Ioanna Ntai; Megan L Bolla; Steven J Malcolmson; Daniel Kahne; Neil L Kelleher; Christopher T Walsh
Journal:  J Am Chem Soc       Date:  2011-03-18       Impact factor: 15.419

Review 3.  Uridine natural products: Challenging targets and inspiration for novel small molecule inhibitors.

Authors:  Christine A Arbour; Barbara Imperiali
Journal:  Bioorg Med Chem       Date:  2020-07-30       Impact factor: 3.641

4.  tRNA-dependent peptide bond formation by the transferase PacB in biosynthesis of the pacidamycin group of pentapeptidyl nucleoside antibiotics.

Authors:  Wenjun Zhang; Ioanna Ntai; Neil L Kelleher; Christopher T Walsh
Journal:  Proc Natl Acad Sci U S A       Date:  2011-07-11       Impact factor: 11.205

5.  Identification of the biosynthetic gene cluster for the pacidamycin group of peptidyl nucleoside antibiotics.

Authors:  Wenjun Zhang; Bohdan Ostash; Christopher T Walsh
Journal:  Proc Natl Acad Sci U S A       Date:  2010-09-08       Impact factor: 11.205

6.  A Chemical Strategy for Intracellular Arming of an Endogenous Broad-Spectrum Antiviral Nucleotide.

Authors:  Kellan T Passow; Haley S Caldwell; Kiet A Ngo; Jamie J Arnold; Nicole M Antczak; Anoop Narayanan; Joyce Jose; Shana J Sturla; Craig E Cameron; Alexander T Ciota; Daniel A Harki
Journal:  J Med Chem       Date:  2021-10-18       Impact factor: 7.446

7.  Biosynthesis of a water-soluble lipid I analogue and a convenient assay for translocase I.

Authors:  Shajila Siricilla; Katsuhiko Mitachi; Karolina Skorupinska-Tudek; Ewa Swiezewska; Michio Kurosu
Journal:  Anal Biochem       Date:  2014-06-02       Impact factor: 3.365

8.  Solid-phase synthesis of a thymidinyl dipeptide urea library.

Authors:  Dianqing Sun; Richard E Lee
Journal:  J Comb Chem       Date:  2007-04-07

Review 9.  Discovery and applications of nucleoside antibiotics beyond polyoxin.

Authors:  Hiroyuki Osada
Journal:  J Antibiot (Tokyo)       Date:  2019-09-25       Impact factor: 2.649

Review 10.  Mechanism of action of nucleoside antibacterial natural product antibiotics.

Authors:  Timothy D H Bugg; Rachel V Kerr
Journal:  J Antibiot (Tokyo)       Date:  2019-08-30       Impact factor: 2.649

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