Institute of Molecular and Cellular Biosciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan.
Bioorg Med Chem Lett. 2012 Jul 1;22(13):4453-7. doi: 10.1016/j.bmcl.2012.04.134. Epub 2012 May 23.
Protein knockdown can be achieved by the use of a small molecule that possesses affinity for both the target protein and ubiquitin ligase. We have designed such a degradation-inducing molecule targeting cIAP1 and CRABP-II, which are involved in proliferation of several cancer cell lines and in neuroblastoma growth, respectively. As a CRABP-II-recognizing moiety, all-trans retinoic acid (ATRA, 3), a physiological ligand of CRABP, was chosen. As a cIAP1-recognizing moiety, MV1 (5), which is a cIAP1/cIAP2/XIAP pan-ligand, was chosen. Although cIAP1 itself possesses ubiquitin ligase activity, we expected that its decomposition would be efficiently mediated by related molecules, including cIAP2 and XIAP, which also possess ubiquitin ligase activity. The designed degradation inducer 6, in which ATRA (3) and MV1 (5) moieties are connected via a linker, was synthesized and confirmed to induce efficient degradation of both cIAP1 and CRABP-II. It showed potently inhibited the proliferation of IMR32 cells.
通过使用同时与靶蛋白和泛素连接酶具有亲和力的小分子,可以实现蛋白质敲低。我们设计了这样一种降解诱导分子,靶向参与几种癌细胞系增殖的 cIAP1 和 CRABP-II 以及神经母细胞瘤生长的 CRABP-II。作为一种 CRABP-II 识别部分,选择全反式视黄酸(ATRA,3),它是 CRABP 的生理配体。作为 cIAP1 识别部分,选择 MV1(5),它是 cIAP1/cIAP2/XIAP 的泛配体。尽管 cIAP1 本身具有泛素连接酶活性,但我们预计其分解将通过相关分子(包括具有泛素连接酶活性的 cIAP2 和 XIAP)有效地介导。设计的降解诱导剂 6 通过连接子连接 ATRA(3)和 MV1(5)部分,已被合成并证实能有效诱导 cIAP1 和 CRABP-II 的降解。它显示出强烈抑制 IMR32 细胞增殖的作用。