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利用氧杂环丁烷和氮杂环丁烷磺酰氟在药物研发中的机遇。

Harnessing Oxetane and Azetidine Sulfonyl Fluorides for Opportunities in Drug Discovery.

作者信息

Symes Oliver L, Ishikura Hikaru, Begg Callum S, Rojas Juan J, Speller Harry A, Cherk Anson M, Fang Marco, Leung Domingo, Croft Rosemary A, Higham Joe I, Huang Kaiyun, Barnard Anna, Haycock Peter, White Andrew J P, Choi Chulho, Bull James A

机构信息

Department of Chemistry, Imperial College London, Molecular Sciences Research Hub, White City Campus, Wood Lane, London W12 0BZ, U.K.

Medicine Design, Pfizer Research and Development, Groton, Connecticut 06340, United States.

出版信息

J Am Chem Soc. 2024 Dec 25;146(51):35377-35389. doi: 10.1021/jacs.4c14164. Epub 2024 Dec 12.

Abstract

Four-membered heterocycles such as oxetanes and azetidines represent attractive and emergent design options in medicinal chemistry due to their small and polar nature and potential to significantly impact the physiochemical properties of drug molecules. The challenging preparation of these derivatives, especially in a divergent manner, has severely limited their combination with other medicinally and biologically important groups. Consequently, there is a substantial demand for mild and effective synthetic strategies to access new oxetane and azetidine derivatives and molecular scaffolds. Here, we report the development and use of oxetane sulfonyl fluorides (OSFs) and azetidine sulfonyl fluorides (ASFs), which behave as precursors to carbocations in an unusual defluorosulfonylation reaction pathway (deFS). The small-ring sulfonyl fluorides are activated under mild thermal conditions (60 °C), and the generated reactive intermediates couple with a broad range of nucleophiles. Oxetane and azetidine heterocyclic, -sulfoximine, and -phosphonate derivatives are prepared, several of which do not have comparable carbonyl analogs, providing new chemical motifs and design elements for drug discovery. Alternatively, a SuFEx pathway under anionic conditions accesses oxetane-sulfur(VI) derivatives. We demonstrate the synthetic utility of novel OSF and ASF reagents through the synthesis of 11 drug analogs, showcasing their potential for subsequent diversification and facile inclusion into medicinal chemistry programs. Moreover, we propose the application of the OSF and ASF reagents as linker motifs and demonstrate the incorporation of pendant groups suitable for common conjugation reactions. Productive deFS reactions with E3 ligase recruiters such as pomalidomide and related derivatives provide new degrader motifs and potential PROTAC linkers.

摘要

四元杂环,如氧杂环丁烷和氮杂环丁烷,由于其体积小、极性强,以及对药物分子物理化学性质有显著影响的潜力,在药物化学中代表了有吸引力且新兴的设计选择。这些衍生物的制备具有挑战性,尤其是以多样化的方式制备,这严重限制了它们与其他医学和生物学上重要基团的结合。因此,迫切需要温和有效的合成策略来获得新的氧杂环丁烷和氮杂环丁烷衍生物及分子骨架。在此,我们报道了氧杂环丁烷磺酰氟(OSFs)和氮杂环丁烷磺酰氟(ASFs)的开发与应用,它们在一种不寻常的脱氟磺酰化反应途径(deFS)中作为碳正离子的前体。小环磺酰氟在温和的热条件(60℃)下被激活,生成的反应中间体与多种亲核试剂偶联。制备了氧杂环丁烷和氮杂环丁烷杂环、-亚砜亚胺和-膦酸酯衍生物,其中一些没有可比的羰基类似物,为药物发现提供了新的化学基序和设计元素。或者,在阴离子条件下的SuFEx途径可得到氧杂环丁烷-硫(VI)衍生物。我们通过合成11种药物类似物展示了新型OSF和ASF试剂的合成效用,凸显了它们后续多样化以及轻松纳入药物化学项目的潜力。此外,我们提出将OSF和ASF试剂用作连接基序,并展示了适合常见共轭反应的侧链基团的引入。与泊马度胺等E3连接酶招募剂进行的高效deFS反应提供了新的降解基序和潜在的PROTAC连接子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4842/11673132/2b9e185d78db/ja4c14164_0001.jpg

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