Biosynthesis and Total Synthesis of Pyrronazol B: a Secondary Metabolite from Nannocystis pusilla

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Swjatoslaw N.R. Witte
  • Joachim J. Hug
  • Magalie N.E. Géraldy
  • Rolf Müller
  • Markus Kalesse

Externe Organisationen

  • Helmholtz-Zentrum für Infektionsforschung GmbH (HZI)
  • Deutsches Krebsforschungszentrum (DKFZ)
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Details

OriginalspracheEnglisch
Seiten (von - bis)15917-15921
Seitenumfang5
FachzeitschriftChemistry - a European journal
Jahrgang23
Ausgabenummer63
Frühes Online-Datum24 Okt. 2017
PublikationsstatusVeröffentlicht - 13 Nov. 2017

Abstract

The first stereoselective total synthesis of the natural product pyrronazol B, which contains a chlorinated pyrrole–oxazole–pyrone framework, has been achieved. Genome sequencing of the myxobacterial producer strain Nannocystis pusilla Ari7 led to the identification of the putative biosynthetic gene cluster. The proposed biosynthetic pathway was supported by feeding experiments with stable isotopes of three biosynthetic building blocks, namely l-proline, l-serine, and l-methionine.

ASJC Scopus Sachgebiete

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Biosynthesis and Total Synthesis of Pyrronazol B: a Secondary Metabolite from Nannocystis pusilla. / Witte, Swjatoslaw N.R.; Hug, Joachim J.; Géraldy, Magalie N.E. et al.
in: Chemistry - a European journal, Jahrgang 23, Nr. 63, 13.11.2017, S. 15917-15921.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Witte SNR, Hug JJ, Géraldy MNE, Müller R, Kalesse M. Biosynthesis and Total Synthesis of Pyrronazol B: a Secondary Metabolite from Nannocystis pusilla. Chemistry - a European journal. 2017 Nov 13;23(63):15917-15921. Epub 2017 Okt 24. doi: 10.1002/chem.201703782
Witte, Swjatoslaw N.R. ; Hug, Joachim J. ; Géraldy, Magalie N.E. et al. / Biosynthesis and Total Synthesis of Pyrronazol B : a Secondary Metabolite from Nannocystis pusilla. in: Chemistry - a European journal. 2017 ; Jahrgang 23, Nr. 63. S. 15917-15921.
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abstract = "The first stereoselective total synthesis of the natural product pyrronazol B, which contains a chlorinated pyrrole–oxazole–pyrone framework, has been achieved. Genome sequencing of the myxobacterial producer strain Nannocystis pusilla Ari7 led to the identification of the putative biosynthetic gene cluster. The proposed biosynthetic pathway was supported by feeding experiments with stable isotopes of three biosynthetic building blocks, namely l-proline, l-serine, and l-methionine.",
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T1 - Biosynthesis and Total Synthesis of Pyrronazol B

T2 - a Secondary Metabolite from Nannocystis pusilla

AU - Witte, Swjatoslaw N.R.

AU - Hug, Joachim J.

AU - Géraldy, Magalie N.E.

AU - Müller, Rolf

AU - Kalesse, Markus

N1 - Funding information: We thank Bastien Schnell and Fabian Panter for biosynthetic discussions. We are grateful to Dr. Nestor Zaburannyi for bioin-formatic support. We thank the Boehringer Ingelheim Fonds for financial support.

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