首页> 外文期刊>The Journal of Organic Chemistry >Stereoselective synthesis of allyl-C-mannosyl compounds: Use of a temporary silicon connection in intramolecular allylation strategies with allylsilanes
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Stereoselective synthesis of allyl-C-mannosyl compounds: Use of a temporary silicon connection in intramolecular allylation strategies with allylsilanes

机译:烯丙基-C-甘露糖基化合物的立体选择性合成:在与烯丙基硅烷的分子内烯丙基化策略中使用临时硅连接

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Methyl mannoside 16 containing an allyldimethylsilyl ether at C(2) was synthesized in nine steps from D-mannose. Reaction with TMSOTf in MeCN at room-temperature effected C-glycosylation to provide the alpha-allyl-C-mannosyl product 18 with excellent stereoselectivity. Crossover experiments over a range of reaction concentrations proved that reaction was proceeding via an intermolecular pathway rather than the hoped-for intramolecular delivery route. The exceptionally high stereoselectivity of this allylation in the presence of an acid-scavenger, 2,6-DTBMP, can be attributed to the allylsilyl ether 16 behaving as the allylating agent. Geometrical constraints in the seven-membered ring transition state account for the lack of intramolecular allyl transfer. Attaching a modified allylsilane 29a-c to C(2)OH of methyl mannoside 15 improved matters. Reaction of the tethered mannosides 27a-c with TMSOTf in the presence of 2,6-DTBMP in MeCN at rt provided a range of products, which depended on the size of the alkyl substituents at the silyl ether tether. Diene products were the major compounds irrespective of the size of the alkyl substituents at the silyl ether tether. Their formation can be understood by intramolecular allylation of the allylsilane on to the activated anomeric center, followed by collapse of the intermediate carbocation by preferential attack of an external nucleophile at the silyl ether tether, rather than at the allylic silicon center. A cascade of further reactions rationalizes the formation of the 2-dienyl-substituted tetrahydrofuran 30 and dienes 39 and 40. The desired beta-allyl-C-mannosyl products 42 and 43 were obtained, albeit in low yield, when bulky ethyl and isopropyl groups were employed at the silyl ether tether. Stereospecific oxidative cleavage of the silyl tether in 42 and 43 provided the corresponding stereodefined diols 44 and 45, respectively. Attempts to improve the yield and diastereoselectivity of the desired beta-allyl-C-mannosyls by moving to a sulfoxide mannosyl donor, which could be activated at low temperature, proved unsuccessful.
机译:从D-甘露糖分9步合成了在C(2)处含有烯丙基二甲基甲硅烷基醚的甲基甘露糖苷16。在室温下与MeCN中的TMSOTf反应进行C-糖基化,以提供具有出色立体选择性的α-烯丙基-C-甘露糖基产物18。在一系列反应浓度范围内的交叉实验证明,反应是通过分子间途径而不是分子内传递途径进行的。在存在除酸剂2,6-DTBMP的情况下,该烯丙基化的极高的立体选择性可以归因于烯丙基甲硅烷基醚16作为烯丙基化剂。七元环过渡态的几何约束解释了分子内烯丙基转移的缺乏。将改性的烯丙基硅烷29a-c连接到甲基甘露糖苷15的C(2)OH上可以改善问题。在2,6-DTBMP存在下,在室温下,在MeCN中,束缚的甘露糖苷27a-c与TMSOTf的反应提供了一系列产物,这取决于甲硅烷基醚系链上烷基取代基的大小。不论甲硅烷基醚系链上烷基取代基的大小如何,二烯产物都是主要化合物。它们的形成可以通过烯丙基硅烷分子内烯丙基化到活化的异头中心上,然后通过外部亲核试剂在甲硅烷基醚系绳而不是烯丙基硅中心上的优先攻击而使中间碳阳离子塌陷来理解。一连串的进一步反应使2-二烯基取代的四氢呋喃30和二烯39和40的形成合理化。当庞大的乙基和异丙基基团获得时,尽管收率低,但仍获得了所需的β-烯丙基-C-甘露糖基产物42和43。用于甲硅烷基醚系链。在42和43中甲硅烷基系链的立体特异性氧化裂解分别提供了相应的立体确定的二醇44和45。尝试通过转移至亚砜甘露糖基供体(可在低温下活化)来提高所需β-烯丙基-C-甘露糖基的产率和非对映选择性的尝试未获成功。

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