首页> 外文期刊>Chemistry: A European journal >Collective total synthesis of englerin A and B, orientalol e and F, and oxyphyllol: Application of the organocatalytic [4+3] cycloaddition reaction
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Collective total synthesis of englerin A and B, orientalol e and F, and oxyphyllol: Application of the organocatalytic [4+3] cycloaddition reaction

机译:恩格尔林A和B,东方醇e和F以及叶绿素的集体全合成:有机催化[4 + 3]环加成反应的应用

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摘要

The concise collective total synthesis of englerin A and B, orientalol E and F, and oxyphyllol has been accomplished in 10-15 steps, with the total synthesis of orientalol E and oxyphyllol being achieved for the first time. The success obtained was enabled by the realization of the [4+3] cycloaddition reaction of 9 and 10. Other features of the synthesis include 1) the intramolecular Heck reaction to access the azulene core, 2) the epoxidation-SN2′ reduction sequence to access the allylic alcohol, 3) the efficient regioselective and stereoselective formal hydration of the bridging C-C bond in the synthesis of englerins, and 4) the late-stage chemo- and stereoselective C-H oxidation in the synthesis of orientalol E. The total synthesis of these natural products has enabled the structural revision of oxyphyllol and established the absolute stereochemical features of the organocatalytic [4+3] cycloaddition reaction. The identification of 5 as the natural product oxyphyllol, the success in converting 5 to orientalol E, along with the fact that englerins and oxyphyllol were isolated from plants of the same genus Phyllanthus gives support to our proposed biosynthetic pathways. This work may enable detailed biological evaluations of these natural products and their analogues and derivatives, especially of their potential in the fight against renal cell carcinoma (RCC). Total synthesis: The concise collective total synthesis of englerin A and B, orientalol E and F, and oxyphyllol has been accomplished in 10-15 steps, with the total synthesis of orientalol E and oxyphyllol being achieved for the first time (see scheme).
机译:englerin A和B,香叶酚E和F和羟叶绿素的简明的集体总合成已在10-15个步骤中完成,这是首次实现了香叶酚E和羟叶绿素的总合成。通过实现9和10的[4 + 3]环加成反应,获得了成功的合成。合成的其他特征包括1)分子内Heck反应以访问a基核心,2)环氧化-SN2'还原序列为进入烯丙醇,3)在englerins合成中有效的区域选择性和立体选择性的水合,实现桥连CC键的水合,以及4)在化学合成中的后期化学和立体选择性CH氧化。天然产物可以使叶绿素的结构发生改变,并建立了有机催化[4 + 3]环加成反应的绝对立体化学特征。将5鉴定为天然产物羟叶绿素,成功地将5转化为东方香叶素E,以及从植物毛竹属植物中分离出englerins和oxyphyllol的事实为我们提出的生物合成途径提供了支持。这项工作可以对这些天然产物及其类似物和衍生物进行详细的生物学评估,尤其是它们在对抗肾细胞癌(RCC)方面的潜力。总合成:恩格尔林A和B,香叶素E和F和叶绿素的简明的集体总合成已在10-15个步骤中完成,这是首次实现了香叶素E和叶绿素的总合成(参见方案)。

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