Zhao N, Zhou P, Berova N, Nakanishi K
Department of Chemistry, Columbia University, New York, NY 10027, USA.
Chirality. 1995;7(8):636-51. doi: 10.1002/chir.530070815.
Acyclic 1,3-polyols or skipped polyols are widely distributed in nature. Particularly skipped 1,3-polyols with a terminal 1,2-diol group are present in numerous antifungal polyene macrolides in various masked forms. Although over 200 polyene macrolides are known, the planar structures of only about 40 have been determined, while those for which the full stereochemistry has been elucidated is less than ten. No simple method exists for configurational assignments of the 1,3-polyols moieties; moreover, this class of compounds are difficult to crystallize. In order to develop a general chiroptical method for structure determination of acyclic 1,3-polyols, we have combined a divergent synthetic approach with CD to prepare all possible stereoisomers of 1,2,4-triols, 1,2,4,6-tetrols and 1,2,4,6,8-pentols. The current set of reference polyols should be useful for setting up reference CD libraries and for model studies leading to a general method for configurational assignment of acyclic polyols. This strategy can be used to synthesize further extended members of acyclic 1,3-polyols and mixed 1,2/1,3-polyols which can be used for structural investigations of polyene macrolides and related compounds.
无环1,3 - 多元醇或间隔多元醇在自然界中广泛分布。特别是带有末端1,2 - 二醇基团的间隔1,3 - 多元醇以各种隐蔽形式存在于众多抗真菌多烯大环内酯类化合物中。虽然已知有200多种多烯大环内酯类化合物,但仅确定了约40种的平面结构,而完全阐明其立体化学的化合物不到十种。不存在用于1,3 - 多元醇部分构型归属的简单方法;此外,这类化合物难以结晶。为了开发一种用于无环1,3 - 多元醇结构测定的通用手性光学方法,我们将一种发散合成方法与圆二色光谱(CD)相结合,制备了1,2,4 - 三醇、1,2,4,6 - 四醇和1,2,4,6,8 - 戊醇的所有可能立体异构体。当前这组参考多元醇应有助于建立参考CD库,并用于模型研究,从而得出一种用于无环多元醇构型归属的通用方法。该策略可用于合成无环1,3 - 多元醇和混合1,2/1,3 - 多元醇的进一步扩展成员,这些成员可用于多烯大环内酯类化合物及相关化合物的结构研究。