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单原子的差异:化学-生物学界面的合成与设计。

The Difference a Single Atom Can Make: Synthesis and Design at the Chemistry-Biology Interface.

机构信息

Department of Chemistry and The Skaggs Research Institute, The Scripps Research Institute , 10550 North Torrey Pines Road, La Jolla, California 92037, United States.

出版信息

J Org Chem. 2017 Dec 1;82(23):11961-11980. doi: 10.1021/acs.joc.7b02088. Epub 2017 Oct 13.

Abstract

A Perspective of work in our laboratory on the examination of biologically active compounds, especially natural products, is presented. In the context of individual programs and along with a summary of our work, selected cases are presented that illustrate the impact single atom changes can have on the biological properties of the compounds. The examples were chosen to highlight single heavy atom changes that improve activity, rather than those that involve informative alterations that reduce or abolish activity. The examples were also chosen to illustrate that the impact of such single-atom changes can originate from steric, electronic, conformational, or H-bonding effects, from changes in functional reactivity, from fundamental intermolecular interactions with a biological target, from introduction of a new or altered functionalization site, or from features as simple as improvements in stability or physical properties. Nearly all the examples highlighted represent not only unusual instances of productive deep-seated natural product modifications and were introduced through total synthesis but are also remarkable in that they are derived from only a single heavy atom change in the structure.

摘要

呈现了我们实验室在研究生物活性化合物(尤其是天然产物)方面的工作视角。在各个项目的背景下,并结合我们工作的总结,呈现了一些案例,这些案例说明了单个原子变化对化合物生物性质的影响。选择这些例子是为了突出那些能提高活性的单个重原子变化,而不是那些涉及降低或消除活性的信息性变化。这些例子还说明了这种单原子变化的影响可能源于立体、电子、构象或氢键效应,源于功能反应性的变化,源于与生物靶标的基本分子间相互作用,源于引入新的或改变的功能化位点,或者源于稳定性或物理性质等简单的改进。几乎所有突出显示的例子不仅代表了通过全合成引入的深入的天然产物修饰的不寻常实例,而且还很显著,因为它们仅源自结构中的单个重原子变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8e6/5715292/d5b1f914d95b/jo-2017-02088y_0003.jpg

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