| Literature DB >> 28140487 |
Xiachang Wang1, Yinan Zhang1, Larissa V Ponomareva1, Qingchao Qiu2, Ryan Woodcock2, Sherif I Elshahawi1, Xiabin Chen1, Ziyuan Zhou1, Bruce E Hatcher3, James C Hower4, Chang-Guo Zhan1, Sean Parkin5, Madan K Kharel6, S Randal Voss2, Khaled A Shaaban1, Jon S Thorson1.
Abstract
Four cyclopentenone-containing ansamycin polyketides (mccrearamycins A-D), and six new geldanamycins (Gdms B-G, including new linear and mycothiol conjugates), were characterized as metabolites of Streptomyces sp. AD-23-14 isolated from the Rock Creek underground coal mine acid drainage site. Biomimetic chemical conversion studies using both simple synthetic models and Gdm D confirmed that the mccrearamycin cyclopentenone derives from benzilic acid rearrangement of 19-hydroxy Gdm, and thereby provides a new synthetic derivatization strategy and implicates a potential unique biocatalyst in mccrearamycin cyclopentenone formation. In addition to standard Hsp90α binding and cell line cytotoxicity assays, this study also highlights the first assessment of Hsp90α modulators in a new axolotl embryo tail regeneration (ETR) assay as a potential new whole animal assay for Hsp90 modulator discovery.Entities:
Keywords: Hsp90; ansamycin; axolotl; biomimetic synthesis; regeneration
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Year: 2017 PMID: 28140487 PMCID: PMC5339036 DOI: 10.1002/anie.201612447
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336