Department of Chemistry, Center for Cancer Research and Institute for Drug Discovery , Purdue University , West Lafayette , Indiana 47907 , United States.
Department of Chemistry , The Scripps Research Institute , 130 Scripps Way , Jupiter , Florida 33458 , United States.
J Am Chem Soc. 2018 Dec 19;140(50):17465-17473. doi: 10.1021/jacs.8b07652. Epub 2018 Dec 6.
Abiespiroside A (1), beshanzuenone C (2), and beshanzuenone D (3) belong to the Abies sesquiterpenoid family. Beshanzuenones C (2) and D (3) are isolated from the critically endangered Chinese fir tree species Abies beshanzuensis and demonstrated weak inhibiting activity against protein tyrosine phosphatase 1B (PTP1B). We describe herein the first total syntheses of these Abies sesquiterpenoids relying on the sustainable and inexpensive chiral pool molecule (+)-carvone. The syntheses feature a palladium-catalyzed hydrocarbonylative lactonization to install the 6,6-fused bicyclic ring system and a Dreiding-Schmidt reaction to build the oxaspirolactone moiety of these target molecules. Our chemical total syntheses of these Abies sesquiterpenoids have enabled (i) the validation of beshanzuenone C's weak PTP1B inhibiting potency, (ii) identification of new synthetic analogs with promising and selective protein tyrosine phosphatase SHP2 inhibiting potency, and (iii) preparation of azide-tagged probe molecules for target identification via a chemoproteomic approach. The latter has resulted in the identification and evaluation of DNA polymerase epsilon subunit 3 (POLE3) as one of the novel cellular targets of these Abies sesquiterpenoids and their analogs. More importantly, via POLE3 inactivation by probe molecule 29 and knockdown experiment, we further demonstrated that targeting POLE3 with small molecules may be a novel strategy for chemosensitization to DNA damaging drugs such as etoposide in cancer.
冷杉螺内酯 A(1)、贝沙珠烯 C(2)和贝沙珠烯 D(3)属于冷杉倍半萜家族。贝沙珠烯 C(2)和 D(3)从濒危的中国枞树物种中华冷杉中分离得到,对蛋白酪氨酸磷酸酶 1B(PTP1B)表现出较弱的抑制活性。我们在此描述了这些冷杉倍半萜类化合物的首次全合成,这些化合物依赖于可持续且廉价的手性池分子(+)-香芹酮。合成方法采用钯催化的羰基化内酯化反应构建 6,6-稠合双环体系和 Dreiding-Schmidt 反应构建这些目标分子的氧杂螺内酯部分。这些 Abies sesquiterpenoids 的化学全合成使我们能够:(i)验证贝沙珠烯 C 的弱 PTP1B 抑制活性,(ii)鉴定具有有前途和选择性的蛋白酪氨酸磷酸酶 SHP2 抑制活性的新合成类似物,以及(iii)制备用于通过化学蛋白质组学方法进行靶标鉴定的叠氮标记探针分子。后者导致鉴定和评估 DNA 聚合酶 epsilon 亚基 3(POLE3)为这些 Abies sesquiterpenoids 及其类似物的新型细胞靶标之一。更重要的是,通过探针分子 29 对 POLE3 的失活和敲低实验,我们进一步证明了小分子靶向 POLE3 可能是一种针对癌症中 DNA 损伤药物(如依托泊苷)进行化学增敏的新策略。