The investigational drugs E7820, indisulam and tasisulam (aryl-sulfonamides) promote the degradation of the splicing factor RBM39 in a proteasome-dependent mechanism. While the activity critically depends on the cullin RING ligase substrate receptor DCAF15, the molecular details remain elusive. Here we present the cryo-EM structure of the DDB1-DCAF15-DDA1 core ligase complex bound to RBM39 and E7820 at a resolution of 4.4 Å, together with crystal structures of engineered subcomplexes. We show that DCAF15 adopts a new fold stabilized by DDA1, and that extensive protein-protein contacts between the ligase and substrate mitigate low affinity interactions between aryl-sulfonamides and DCAF15. Our data demonstrate how aryl-sulfonamides neo-functionalize a shallow, non-conserved pocket on DCAF15 to selectively bind and degrade RBM39 and the closely related splicing factor RBM23 without the requirement for a high-affinity ligand, which has broad implications for the de novo discovery of molecular glue degraders.

译文

研究药物E7820,地苏拉姆和tassullam (芳基磺酰胺) 以蛋白酶体依赖性机制促进剪接因子RBM39的降解。尽管活性主要取决于cullin环连接酶底物受体DCAF15,但分子细节仍然难以捉摸。在这里,我们介绍了以4.4 å å 的分辨率与RBM39和E7820结合的DDB1-DCAF15-DDA1核心连接酶复合物的cryo-EM结构,以及工程亚复合物的晶体结构。我们证明DCAF15采用了由DDA1稳定的新折叠,并且连接酶和底物之间广泛的蛋白质-蛋白质接触减轻了芳基磺酰胺和DCAF15之间的低亲和力相互作用。我们的数据证明了芳基磺酰胺如何使DCAF15上的浅,非保守的口袋官能化,以选择性地结合和降解RBM39和密切相关的剪接因子RBM23,而不需要高亲和力配体,这对从头发现分子胶降解剂具有广泛的意义。

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