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杂芳基交叉偶联作为合成lavendamycin 类似物的入口:模型研究。

Heteroaryl cross-coupling as an entry toward the synthesis of lavendamycin analogues: a model study.

机构信息

Department of Organic Chemistry, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000 Gent, Belgium.

出版信息

J Org Chem. 2010 Jan 15;75(2):424-33. doi: 10.1021/jo902287t.

Abstract

ABC analogues of the antitumor antibiotic lavendamycin, which contain the key metal chelation site and redox-active quinone unit essential for biological activity, were prepared via the palladium(0)-catalyzed cross-coupling reaction of various 2-haloheteroaromatics with 2-stannylated pyridines and quinolines. Using the Stille reaction, 2-bromo substituted quinolines and 1-bromoisoquinolines were found to undergo efficient coupling with 2-pyridinylstannanes to provide unsymmetrical heterobiaryl derivatives. While the Stille reaction using the reverse coupling partners (i.e., 2-quinolinylstannanes and haloheteroaromatics) had not received much attention in the literature, we found that this alternative coupling reaction efficiently provided several new heterobiaryl derivatives. The gold-catalyzed intramolecular cycloisomerization of N-(prop-2-ynyl)-1H-indole-2-carboxamide smoothly afforded a beta-carbolinone derivative that was subsequently used for a Pd(0)-catalyzed cross-coupling directed toward the synthesis of lavendamycin analogues.

摘要

通过钯(0)催化的各种 2-卤代杂芳烃与 2-锡代吡啶和喹啉的交叉偶联反应,制备了抗肿瘤抗生素拉维霉素的 ABC 类似物,其中包含关键的金属螯合位点和氧化还原活性醌单元,这些都是生物活性所必需的。使用 Stille 反应,发现 2-溴取代的喹啉和 1-溴异喹啉与 2-吡啶基锡烷发生有效偶联,提供不对称杂芳基二芳基衍生物。虽然文献中对使用反向偶联试剂(即 2-喹啉基锡烷和卤代杂芳烃)的 Stille 反应关注较少,但我们发现这种替代偶联反应能够有效地提供几种新的杂芳基二芳基衍生物。N-(丙炔基)-1H-吲哚-2-甲酰胺的金催化分子内环化异构化反应顺利得到β-咔啉酮衍生物,随后用于钯(0)催化的交叉偶联反应,以合成拉维霉素类似物。

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