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New Organogermanium Substrates for Palladium-Catalyzed Cross-Coupling Reactions. Application of Organogermanes towards the Synthesis of Carbon-5 Modified Uridine Analogues

机译:新的有机锗基底用于钯催化的交叉偶联反应。有机锗烷在碳-5修饰的尿苷类似物合成中的应用

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摘要

The diverse biological properties exhibited by uridine analogues modified at carbon-5 of the uracil base have attracted special interest to the development of efficient methodologies for their synthesis. This study aimed to evaluate the possible application of vinyl tris(trimethylsilyl)germanes in the synthesis of conjugated 5-modified uridine analogues via Pd-catalyzed cross-coupling reactions. The stereoselective synthesis of 5-[(2-tris(trimethylsilyl)germyl)ethenyl]uridine derivatives was achieved by the radical-mediated hydrogermylation of the protected 5-alkynyluridine precursors with tris(trimethylsilyl)germane [(TMS)3GeH]. The hydrogermylation with Ph3GeH afforded in addition to the expected 5-vinylgermane, novel 5-(2-triphenylgermyl)acetyl derivatives. Also, the treatment with Me3GeH provided access to 5-vinylgermane uridine analogues with potential biological applications. Since the Pd-catalyzed cross-coupling of organogermanes has received much less attention than the couplings involving organostannanes and organosilanes, we were prompted to develop novel organogermane precursors suitable for transfer of aryl and/or alkenyl groups. The allyl(phenyl)germanes were found to transfer allyl groups to aryl iodides in the presence of sodium hydroxide or tetrabutylammonium fluoride (TBAF) via a Heck arylation mechanism. On the other hand, the treatment of allyl(phenyl)germanes with tetracyanoethylene (TCNE) effectively cleaved the Ge-C(allyl) bonds and promoted the transfer of the phenyl groups upon fluoride activation in toluene. It was discovered that the trichlorophenyl,- dichlorodiphenyl,- and chlorotriphenylgermanes undergo Pd-catalyzed cross-couplings with aryl bromides and iodides in the presence of TBAF in toluene with addition of the measured amount of water. One chloride ligand on the Ge center allows efficient activation by fluoride to promote transfer of one, two or three phenyl groups from the organogermane precursors. The methodology shows that organogermanes can render a coupling efficiency comparable to the more established stannane and silane counterparts. Our coupling methodology (TBAF/moist toluene) was also found to promote the transfer of multiple phenyl groups from analogous chloro(phenyl)silanes and stannanes.
机译:由尿嘧啶碱基的碳-5修饰的尿苷类似物表现出的多种生物学特性引起了对合成它们的有效方法学的特别兴趣。这项研究旨在评估乙烯基三(三甲基甲硅烷基)锗烷在通过钯催化的交叉偶联反应合成共轭5-修饰的尿苷类似物中的可能应用。通过由三(三甲基甲硅烷基)锗烷[(TMS)3 GeH]自由基介导的受保护的5-炔基尿苷前体的氢化锗氢化反应,可以实现5-[(2-(三(三甲基甲硅烷基)锗烷基)乙烯基]尿苷衍生物的立体选择性合成。除了期望的5-乙烯基锗烷之外,用Ph 3 GeH进行的氢化锗烷基化还提供了新型的5-(2-三苯基锗基)乙酰基衍生物。同样,用Me3GeH进行治疗还提供了具有潜在生物学应用的5-乙烯基锗烷尿苷类似物。由于有机锗烷的Pd催化交叉偶联比涉及有机锡烷和有机硅烷的偶联受到的关注要少得多,因此促使我们开发出适用于芳基和/或烯基转移的新型有机锗烷前体。发现在氢氧化钠或氟化四丁基铵(TBAF)存在下,经由Heck芳基化机理,烯丙基(苯基)锗烷可将烯丙基转移至芳基碘化物。另一方面,用四氰基乙烯(TCNE)处理烯丙基(苯基)锗烷可有效裂解Ge-C(烯丙基)键,并促进甲苯中氟化物活化后苯基的转移。已经发现,在TBAF存在下,在甲苯中加入一定量的水,三氯苯基,-二氯二苯基和-和氯三苯基锗烷与芳基溴和碘化物进行钯催化的交叉偶联。 Ge中心上的一个氯配体允许氟化物有效活化,以促进有机锗烷前体中一个,两个或三个苯基的转移。该方法表明,有机锗烷可以提供与更成熟的锡烷和硅烷对应物相当的偶联效率。我们的偶联方法(TBAF /湿甲苯)也被发现可以促进类似氯(苯基)硅烷和锡烷的多个苯基转移。

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    Pitteloud Jean-Philippe;

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  • 年度 2010
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