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Total Synthesis of the AntitumorAntibiotic (±)-Streptonigrin:First- and Second-Generation Routes for de Novo Pyridine FormationUsing Ring-Closing Metathesis

机译:全合成抗肿瘤药抗生素(±)-链霉菌素:从头合成吡啶的第一代和第二代途径使用闭环复分解

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摘要

The total synthesis of (±)-streptonigrin, a potent tetracyclic aminoquinoline-5,8-dione antitumor antibiotic that reached phase II clinical trials in the 1970s, is described. Two routes to construct a key pentasubstituted pyridine fragment are depicted, both relying on ring-closing metathesis but differing in the substitution and complexity of the precursor to cyclization. Both routes are short and high yielding, with the second-generation approach ultimately furnishing (±)-streptonigrin in 14 linear steps and 11% overall yield from inexpensive ethyl glyoxalate. This synthesis will allow for the design and creation of druglike late-stage natural product analogues to address pharmacological limitations. Furthermore, assessment of a number of chiral ligands in a challenging asymmetric Suzuki–Miyaura cross-coupling reaction has enabled enantioenriched (up to 42% ee) synthetic streptonigrin intermediates to be prepared for the first time.
机译:描述了(±)-链霉菌素(一种有效的四环氨基喹啉-5,8-二酮抗肿瘤抗生素)的总合成,该合成物在1970年代达到了II期临床试验。描述了构建关键的五取代的吡啶片段的两种途径,这两种途径均依赖于闭环易位,但是在环化的前体的取代和复杂性上有所不同。两种途径均短且高产,第二代方法最终以14个线性步骤提供(±)-链霉菌素,而廉价乙二醛乙酯的总产率为11%。这种合成将允许设计和产生类似药物的后期天然产物类似物以解决药理学限制。此外,在具有挑战性的不对称Suzuki-Miyaura交叉偶联反应中对许多手性配体的评估使得首次可以制备对映体富集(最多ee为42%)的合成链霉菌素中间体。

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