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Keywords

  • Streptomyces axinellae (2)
  • anti-trypanosomal (2)
  • marine sponge (2)
  • protease inhibition (2)
  • tetromycin (2)
  • Biologie (1)
  • cysteine protease (1)
  • discovery (1)
  • drugs (1)
  • streptomyces (1)
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  • Buback, Verena (2) (remove)

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  • Julius-von-Sachs-Institut für Biowissenschaften (2)
  • Institut für Organische Chemie (1)
  • Institut für Pharmazie und Lebensmittelchemie (1)

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New Tetromycin Derivatives with Anti-Trypanosomal and Protease Inhibitory Activities (2011)
Pimentel-Elardo, Sheila M. ; Buback, Verena ; Gulder, Tobias A. M. ; Bugni, Tim S. ; Reppart, Jason ; Bringmann, Gerhard ; Ireland, Chris M. ; Schirmeister, Tanja ; Hentschel, Ute
Four new tetromycin derivatives, tetromycins 1-4 and a previously known one, tetromycin B (5) were isolated from Streptomyces axinellae Pol001(T) cultivated from the Mediterranean sponge Axinella polypoides. Structures were assigned using extensive 1D and 2D NMR spectroscopy as well as HRESIMS analysis. The compounds were tested for antiparasitic activities against Leishmania major and Trypanosoma brucei, and for protease inhibition against several cysteine proteases such as falcipain, rhodesain, cathepsin L, cathepsin B, and viral proteases SARS-CoV M(pro), and PL(pro). The compounds showed antiparasitic activities against T. brucei and time-dependent inhibition of cathepsin L-like proteases with K(i) values in the low micromolar range.
New Tetromycin Derivatives with Anti-Trypanosomal and Protease Inhibitory Activities (2011)
Pimentel-Elardo, Sheila M. ; Buback, Verena ; Gulder, Tobias A. M. ; Bugni, Tim S. ; Reppart, Jason ; Bringmann, Gerhard ; Ireland, Chris M. ; Schirmeister, Tanja ; Hentschel, Ute
Four new tetromycin derivatives, tetromycins 1–4 and a previously known one, tetromycin B (5) were isolated from Streptomyces axinellae Pol001T cultivated from the Mediterranean sponge Axinella polypoides. Structures were assigned using extensive 1D and 2D NMR spectroscopy as well as HRESIMS analysis. The compounds were tested for antiparasitic activities against Leishmania major and Trypanosoma brucei, and for protease inhibition against several cysteine proteases such as falcipain, rhodesain, cathepsin L, cathepsin B, and viral proteases SARS-CoV Mpro, and PLpro. The compounds showed antiparasitic activities against T. brucei and time-dependent inhibition of cathepsin L-like proteases with Ki values in the low micromolar range.
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