Breinbauer Rolf, Vetter Ingrid R, Waldmann Herbert
Department of Chemical Biology, Max-Planck-Institut für molekulare Physiologie, Otto-Hahn-Strasse 11, 44227 Dortmund, Germany.
Angew Chem Int Ed Engl. 2002 Aug 16;41(16):2879-90. doi: 10.1002/1521-3773(20020816)41:16<2878::AID-ANIE2878>3.0.CO;2-B.
In the continuing effort to find small molecules that alter protein function and ultimately might lead to new drugs, combinatorial chemistry has emerged as a very powerful tool. Contrary to original expectations that large libraries would result in the discovery of many hit and lead structures, it has been recognized that the biological relevance, design, and diversity of the library are more important. As the universe of conceivable compounds is almost infinite, the question arises: where is a biologically validated starting point from which to build a combinatorial library? Nature itself might provide an answer: natural products have been evolved to bind to proteins. Recent results in structural biology and bioinformatics indicate that the number of distinct protein families and folds is fairly limited. Often the same structural domain is used by many proteins in a more or less modified form created by divergent evolution. Recent progress in solid-phase organic synthesis has enabled the synthesis of combinatorial libraries based on the structure of complex natural products. It can be envisioned that natural-product-based combinatorial synthesis may permit hit or lead compounds to be found with enhanced probability and quality.
在持续寻找能够改变蛋白质功能并最终可能催生新药物的小分子的过程中,组合化学已成为一种非常强大的工具。与最初认为大型文库会带来许多活性和先导结构发现的预期相反,人们已经认识到文库的生物学相关性、设计和多样性更为重要。由于可想象的化合物数量几乎是无限的,问题就出现了:构建组合文库的经过生物学验证的起点在哪里?大自然本身或许能提供答案:天然产物经过进化已能与蛋白质结合。结构生物学和生物信息学的最新研究结果表明,不同蛋白质家族和折叠的数量相当有限。许多蛋白质常常使用由趋异进化产生的或多或少经过修饰的相同结构域。固相有机合成的最新进展使得基于复杂天然产物结构的组合文库的合成成为可能。可以设想,基于天然产物的组合合成可能会使发现活性或先导化合物的概率和质量得到提高。