Suppr超能文献

通过“转向全合成”获得具有改善生物学特性的拉春库林类似物:制备、评估及计算分析

Latrunculin analogues with improved biological profiles by "diverted total synthesis": preparation, evaluation, and computational analysis.

作者信息

Fürstner Alois, Kirk Douglas, Fenster Michaël D B, Aïssa Christophe, De Souza Dominic, Nevado Cristina, Tuttle Tell, Thiel Walter, Müller Oliver

机构信息

Max-Planck-Institut für Kohlenforschung, 45470 Mülheim/Ruhr, Germany.

出版信息

Chemistry. 2007;13(1):135-49. doi: 10.1002/chem.200601136.

Abstract

Deliberate digression from the blueprint of the total syntheses of latrunculin A (1) and latrunculin B (2) reported in the accompanying paper allowed for the preparation of a focused library of "latrunculin-like" compounds, in which all characteristic structural elements of these macrolides were subject to pertinent molecular editing. Although all previously reported derivatives of 1 and 2 were essentially devoid of any actin-binding capacity, the synthetic compounds presented herein remain fully functional. One of the designer molecules with a relaxed macrocyclic backbone, that is compound 44, even surpasses latrunculin B in its effect on actin while being much easier to prepare. This favorable result highlights the power of "diverted total synthesis" as compared to the much more widely practiced chemical modification of a given lead compound by conventional functional group interconversion. A computational study was carried out to rationalize the observed effects. The analysis of the structure of the binding site occupied by the individual ligands on the G-actin host shows that latrunculin A and 44 both have similar hydrogen-bond network strengths and present similar ligand distortion. In contrast, the H-bond network is weaker for latrunculin B and the distortion of the ligand from its optimum geometry is larger. From this, one may expect that the binding ability follows the order 1 >/= 44 > 2, which is in accord with the experimental data. Furthermore, the biological results provide detailed insights into structure/activity relationships characteristic for the latrunculin family. Thus, it is demonstrated that the highly conserved thiazolidinone ring of the natural products can be replaced by an oxazolidinone moiety, and that inversion of the configuration at C16 (latrunculin B numbering) is also well accommodated. From a purely chemical perspective, this study attests to the maturity of ring-closing alkyne metathesis (RCAM) catalyzed by a molybdenum alkylidyne complex generated in situ, which constitutes a valuable tool for advanced organic synthesis and natural product chemistry.

摘要

在随附论文中报道的拉春库林A(1)和拉春库林B(2)全合成蓝图基础上的刻意偏离,使得制备了一个聚焦的“拉春库林类似物”化合物库,其中这些大环内酯类化合物的所有特征结构单元都经过了相关的分子编辑。尽管先前报道的1和2的所有衍生物基本上都没有任何肌动蛋白结合能力,但本文介绍的合成化合物仍具有完全的功能。具有松弛大环骨架的设计分子之一,即化合物44,在对肌动蛋白的作用方面甚至超过了拉春库林B,同时其制备要容易得多。这一良好结果突出了“转向全合成”相对于通过传统官能团转化对给定先导化合物进行更为广泛实践的化学修饰的优势。进行了一项计算研究以解释观察到的效应。对G-肌动蛋白主体上各个配体占据的结合位点结构分析表明,拉春库林A和44具有相似的氢键网络强度,并且呈现相似的配体畸变。相比之下,拉春库林B的氢键网络较弱,并且配体相对于其最佳几何形状的畸变较大。由此可以预期,结合能力遵循1≥44>2的顺序,这与实验数据一致。此外,生物学结果为拉春库林家族特有的结构/活性关系提供了详细的见解。因此,证明了天然产物中高度保守的噻唑烷酮环可以被恶唑烷酮部分取代,并且C16(拉春库林B编号)处构型的反转也能很好地被接受。从纯粹化学的角度来看,这项研究证明了原位生成的钼亚烷基络合物催化的闭环炔烃复分解(RCAM)的成熟度,这是高级有机合成和天然产物化学的一种有价值的工具。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验