对映选择合成
全合成
氢胺化
组合化学
化学
立体化学
催化作用
有机化学
分子内力
作者
Chad N. Ungarean,Petra Galer,Yu Zhang,Ken S. Lee,Justin M. Ngai,Sungjong Lee,Peng Liu,David Šarlah
出处
期刊:Nature Synthesis
[Springer Nature]
日期:2022-05-26
卷期号:1 (7): 542-547
被引量:17
标识
DOI:10.1038/s44160-022-00080-x
摘要
Aminoglycosides (AGs) represent a large group of pseudoglycoside natural products, in which several different sugar moieties are harnessed to an aminocyclitol core. AGs constitute a major class of antibiotics that target the prokaryotic ribosome of many problematic pathogens. Hundreds of AGs have been isolated to date, with 1,3-diaminocyclohexanetriol, known as 2-deoxystreptamine (2-DOS), being the most abundant aglycon core. However, owning to their diverse and complex architecture, all AG-based drugs are either natural substances or analogues prepared by late-stage modifications. Synthetic approaches to AGs are rare and lengthy; most studies involve semi-synthetic reunion of modified fragments. Here we report a bottom-up chemical synthesis of the 2-DOS-based AG antibiotic ribostamycin, which proceeds in ten linear operations from benzene. A key enabling transformation involves a Cu-catalyzed, enantioselective, dearomative hydroamination, which set the stage for the rapid and selective introduction of the remaining 2-DOS heteroatom functionality. This work demonstrates how the combination of a tailored, dearomative logic and strategic use of subsequent olefin functionalizations can provide practical and concise access to the AG class of compounds.
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