首页> 外文期刊>Beilstein journal of organic chemistry. >Alkylation of lithiated dimethyl tartrate acetonide with unactivated alkyl halides and application to an asymmetric synthesis of the 2,8-dioxabicyclo[3.2.1]octane core of squalestatins/zaragozic acids
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Alkylation of lithiated dimethyl tartrate acetonide with unactivated alkyl halides and application to an asymmetric synthesis of the 2,8-dioxabicyclo[3.2.1]octane core of squalestatins/zaragozic acids

机译:锂化的酒石酸二甲酯二丙酮化物与未活化的烷基卤化物的烷基化及其在角鲨素/芥子酸的2,8-二氧杂双环[3.2.1]辛烷核的不对称合成中的应用

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(R,R)-Dimethyl tartrate acetonide 7 in THF/HMPA undergoes deprotonation with LDA and reaction at ?78 °C during 12–72 h with a range of alkyl halides, including non-activated substrates, to give single diastereomers (at the acetonide) of monoalkylated tartrates 17, 24, 33a–f, 38a,b, 41 of R,R-configuration, i.e., a stereoretentive process (13–78% yields). Separable trans-dialkylated tartrates 34a–f can be co-produced in small amounts (9–14%) under these conditions, and likely arise from the achiral dienolate 36 of tartrate 7. Enolate oxidation and acetonide removal from γ-silyloxyalkyl iodide-derived alkylated tartrates 17 and 24 give ketones 21 and 26 and then Bamford–Stevens-derived diazoesters 23 and 27, respectively. Only triethylsilyl-protected diazoester 27 proved viable to deliver a diazoketone 28. The latter underwent stereoselective carbonyl ylide formation–cycloaddition with methyl glyoxylate and acid-catalysed rearrangement of the resulting cycloadduct 29, to give the 3,4,5-tricarboxylate-2,8-dioxabicyclo[3.2.1]octane core 31 of squalestatins/zaragozic acids. Furthermore, monoalkylated tartrates 33a,d,f, and 38a on reaction with NaOMe in MeOH at reflux favour (≈75:25) the cis-diester epimers epi-33a,d,f and epi-38a (54–67% isolated yields), possessing the R,S-configuration found in several monoalkylated tartaric acid motif-containing natural products.
机译:(R,R)-酒石酸二甲酯丙酮酸酯7在THF / HMPA中经历LDA脱质子反应,并在?78°C下与一系列烷基卤化物(包括未活化的底物)在约78°C下反应,得到单一非对映异构体(在酸单酯的酒石酸17、24、33a-f,38a,b,41的R,R-构型,即立体保持过程(13-78%的收率)。在这些条件下,可以少量(9–14%)共同生产可分离的反式二烷基酒石酸酒石酸盐34a–f,并且可能是由酒石酸盐7的非手性二烯酸36产生的。酒石酸烷基酯17和24分别得到酮21和26,然后是Bamford-Stevens衍生的重氮酸酯23和27。只有三乙基甲硅烷基保护的重氮酸酯27被证明可以递送重氮酮28。后者经过立体选择性羰基内酯的形成-与乙醛酸甲酯的环加成反应以及酸催化的环加成物29的重排,得到3,4,5-三羧酸酯2,角鲨苷/芥子酸的8-二氧杂双环[3.2.1]辛烷核31。此外,与甲醇中的NaOMe在回流下(约75:25)与NaOMe反应时,酒石酸单酯33a,d,f和38a有利于顺式-二酯差向异构体epi-33a,d,f和epi-38a(分离产率为54-67%) ),具有在几种含单烷基化酒石酸基序的天然产物中发现的R,S-构型。

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