Merino P, Franco S, Merchan F L, Tejero T
Departamento de Quimica Organica, ICMA, Facultad de Ciencias, Universidad de Zaragoza, E-50009 Zaragoza, Aragon, Spain.
J Org Chem. 2000 Sep 8;65(18):5575-89. doi: 10.1021/jo0002689.
The synthesis of new nucleoside analogues is currently of high interest. We report here full details of a study leading to the synthesis of novel isoxazolidinyl analogues of alpha-amino acid nucleosides. Three different synthetic approaches starting from L-serine have been evaluated for the construction of the isoxazolidine ring. These approaches consisted of Michael addition of N-benzylhydroxylamine to alpha,beta-unsaturated esters, nucleophilic addition of silyl ketene acetals to nitrones and 1, 3-dipolar cycloaddition of nitrones with vinyl acetate. Both Michael addition and nucleophilic addition of enolates could be carried out with stereocontrol at the newly formed stereogenic carbon. The stereocontrol observed in these reactions arises from the protecting group arrangement in the L-serine-derived substrates. Thus, whereas compounds having a diprotected nitrogen led to syn adducts, compounds having a monoprotected nitrogen gave rise to anti adducts. On the other hand, substrates having either a diprotected or monoprotected nitrogen atom led to anti adducts through the cycloaddition route. So, by choosing the appropriate route, isoxazolidinyl analogues having either syn or anti configuration with respect to the glycine unit can be prepared in enantiomerically pure form. The stereoselective synthesis of isoxazolidinyl analogues of deoxypolyoxin C and uracil polyoxin C in both D and L enantiomeric forms using these techniques has been achieved in good yields.
目前,新型核苷类似物的合成备受关注。我们在此报告一项研究的详细情况,该研究旨在合成α-氨基酸核苷的新型异恶唑烷类似物。我们评估了从L-丝氨酸出发的三种不同合成方法来构建异恶唑烷环。这些方法包括将N-苄基羟胺迈克尔加成到α,β-不饱和酯上、硅基烯酮缩醛对硝酮的亲核加成以及硝酮与醋酸乙烯酯的1,3-偶极环加成。迈克尔加成和烯醇盐的亲核加成都可以在新形成的手性碳上进行立体控制。这些反应中观察到的立体控制源于L-丝氨酸衍生底物中的保护基排列。因此,具有双保护氮的化合物生成顺式加合物,而具有单保护氮的化合物生成反式加合物。另一方面,具有双保护或单保护氮原子的底物通过环加成途径生成反式加合物。所以,通过选择合适的路线,可以以对映体纯的形式制备相对于甘氨酸单元具有顺式或反式构型的异恶唑烷类似物。使用这些技术已经以良好的产率实现了D和L对映体形式的脱氧多氧霉素C和尿嘧啶多氧霉素C的异恶唑烷类似物的立体选择性合成。