School of Chemistry, University of Wollongong , Wollongong , New South Wales 2522 , Australia.
Research School of Chemistry, Australian National University , Canberra , ACT 0200 , Australia.
J Org Chem. 2018 May 18;83(10):5558-5576. doi: 10.1021/acs.joc.8b00585. Epub 2018 May 3.
The total synthesis of natural (+)-hyacinthacine C was achieved, which allowed correction of its initially proposed structure, as well as six additional hyacinthacine C-type compounds. These compounds were readily accessible from two epimeric anti-1,2-amino alcohols. Keeping a common A-ring configuration, chemical manipulation occurred selectively on the B-ring of the hyacinthacine C-type products through methods of syn-dihydroxylation, S2 ring-opening of a cyclic sulfate, and also employing either ( R)- or ( R, S)-α-methylallyl amine for the Petasis borono Mannich reaction. Our small analogue library was then assessed for its glycosidase inhibitory potency against a panel of glycosidases. (-)-6- Epi-hyacinthacine C and (+)-7- epi-hyacinthacine C (compound names are based on the corrected structure of hyacinthacine C) proved most active, with inhibitory activities ranging between weak (IC = 130 μM) and moderate (IC = 9.9 μM) against the α-glucosidases of rat intestinal maltase, isomaltase, and sucrase, thus identifying potential new leads for future antidiabetic drug development.
天然(+)-百脉根宁 C 的全合成得以实现,这不仅纠正了其最初提出的结构,还得到了另外六种百脉根宁 C 型化合物。这些化合物可从两个非对映异构体的反式-1,2-氨基醇轻易获得。保持共同的 A 环结构,通过顺式-二羟基化、环状硫酸盐的 S2 开环以及 Petasis 硼烷 Mannich 反应中使用(R)-或(R,S)-α-甲基烯丙胺的方法,对百脉根宁 C 型产物的 B 环进行选择性化学操作。然后,我们的小类似物文库被评估了对糖苷酶的糖苷酶抑制活性。(-)-6-表百脉根宁 C 和(+)-7-表百脉根宁 C(化合物名称基于百脉根宁 C 的修正结构)表现出最强的活性,对大鼠肠麦芽糖酶、异麦芽糖酶和蔗糖酶的α-葡萄糖苷酶的抑制活性范围在弱(IC = 130 μM)和中等(IC = 9.9 μM)之间,从而为未来的抗糖尿病药物开发确定了潜在的新先导化合物。