Frontiers Science Center for Transformative Molecules, Center for Chemical Glycobiology, Shanghai Key Laboratory for Molecular Engineering of Chiral Drugs, School of Chemistry and Chemical Engineering, Zhangjiang Institute for Advanced Study, Shanghai Jiao Tong University, Shanghai, PR China.
Discovery Chemistry Unit, HitGen Inc., Chengdu, Sichuan, PR China.
Nat Commun. 2024 Jun 19;15(1):5228. doi: 10.1038/s41467-024-49547-9.
C-1 Glycals serve as pivotal intermediates in synthesizing diverse C-glycosyl compounds and natural products, necessitating the development of concise, efficient and user-friendly methods to obtain C-1 glycosides is essential. The Suzuki-Miyaura cross-coupling of glycal boronates is notable for its reliability and non-toxic nature, but glycal donor stability remains a challenge. Herein, we achieve a significant breakthrough by developing stable glycal boronates, effectively overcoming the stability issue in glycal-based Suzuki-Miyaura coupling. Leveraging the balanced reactivity and stability of our glycal boronates, we establish a robust palladium-catalyzed glycal-based Suzuki-Miyaura reaction, facilitating the formation of various C(sp)-C(sp), C(sp)-C(sp), and C(sp)-C(sp) bonds under mild conditions. Notably, we expand upon this achievement by developing the DNA-compatible glycal-based cross-coupling reaction to synthesize various glycal-DNA conjugates. With its excellent reaction reactivity, stability, generality, and ease of handling, the method holds promise for widespread appication in the preparation of C-glycosyl compounds and natural products.
C-1 糖醛酸酯是合成各种 C-糖基化合物和天然产物的重要中间体,因此开发简洁、高效、易用的方法来获得 C-1 糖苷至关重要。糖醛酸酯硼酸酯的铃木-宫浦偶联因其可靠性和非毒性而引人注目,但糖醛酸酯供体的稳定性仍然是一个挑战。在此,我们通过开发稳定的糖醛酸酯硼酸酯取得了重大突破,有效地克服了糖醛酸酯基铃木-宫浦偶联中的稳定性问题。利用我们糖醛酸酯硼酸酯的平衡反应性和稳定性,我们建立了一种稳健的钯催化糖醛酸酯基铃木-宫浦偶联反应,在温和条件下促进了各种 C(sp)-C(sp)、C(sp)-C(sp)和 C(sp)-C(sp)键的形成。值得注意的是,我们通过开发 DNA 相容的糖醛酸酯基交叉偶联反应来合成各种糖醛酸酯-DNA 缀合物,进一步拓展了这一成果。该方法具有反应活性高、稳定性好、通用性强、操作简便等优点,有望广泛应用于 C-糖基化合物和天然产物的制备。