puromycin a, b and c, cryptic nucleosides identified from streptomyces alboniger nrrl b-1832 by pptase-based activation
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2018
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Abstract
Natural product discovery is pivot for drug development, however, this endeavor is often challenged by the wide inactivation or silence of natural products biosynthetic pathways. We recently developed a highly efficient approach to activate cryptic/silenced biosynthetic pathways through augmentation of the phosphopantetheinylation of carrier proteins. By applying this approach in the Streptomyces alboniger NRRL B-1832, we herein identified three cryptic nucleosides products, including one known puromycin A and two new derivatives (puromycin B and C). The biosynthesis of these products doesn't require the involvement of carrier protein, indicating the phosphopantetheinyl transferase (PPtase) indeed plays a fundamental regulatory role in metabolites biosynthesis. These results demonstrate that the PPtase-based approach have a much broader effective scope than the previously assumed carrier protein-involving pathways, which will benefit future natural products discovery and biosynthetic studies.
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yan2018syntheticpuromycin
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| Authors | ;Xiaoli Yan;Benyin Zhang;Wenya Tian;Qi Dai;Xiaoqin Zheng;Ke Hu;Xinxin Liu;Zixin Deng;Xudong Qu |
| Journal | international journal of offshore and polar engineering |
| Year | 2018 |
| DOI |
10.1016/j.synbio.2018.02.001
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