Department of Chemical Biology, Max Planck Institute of Molecular Physiology, Dortmund, Germany.
CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria.
Nat Commun. 2023 Nov 30;14(1):7908. doi: 10.1038/s41467-023-43657-6.
Targeted proteasomal and autophagic protein degradation, often employing bifunctional modalities, is a new paradigm for modulation of protein function. In an attempt to explore protein degradation by means of autophagy we combine arylidene-indolinones reported to bind the autophagy-related LC3B-protein and ligands of the PDEδ lipoprotein chaperone, the BRD2/3/4-bromodomain containing proteins and the BTK- and BLK kinases. Unexpectedly, the resulting bifunctional degraders do not induce protein degradation by means of macroautophagy, but instead direct their targets to the ubiquitin-proteasome system. Target and mechanism identification reveal that the arylidene-indolinones covalently bind DCAF11, a substrate receptor in the CUL4A/B-RBX1-DDB1-DCAF11 E3 ligase. The tempered α, β-unsaturated indolinone electrophiles define a drug-like DCAF11-ligand class that enables exploration of this E3 ligase in chemical biology and medicinal chemistry programs. The arylidene-indolinone scaffold frequently occurs in natural products which raises the question whether E3 ligand classes can be found more widely among natural products and related compounds.
靶向蛋白酶体和自噬蛋白降解,通常采用双功能模式,是调节蛋白质功能的新范例。为了尝试通过自噬来探索蛋白质降解,我们将芳基-吲哚酮与报道的与自噬相关的 LC3B 蛋白结合的配体以及 PDEδ 脂蛋白伴侣、BRD2/3/4-溴结构域包含蛋白和 BTK 和 BLK 激酶的配体结合。出乎意料的是,由此产生的双功能降解剂不会通过巨自噬诱导蛋白质降解,而是将其靶标导向泛素-蛋白酶体系统。靶标和机制鉴定表明,芳基-吲哚酮与 DCAF11 共价结合,DCAF11 是 CUL4A/B-RBX1-DDB1-DCAF11 E3 连接酶中的底物受体。温和的 α,β-不饱和吲哚酮亲电试剂定义了一种类药物 DCAF11 配体类,可在化学生物学和药物化学计划中探索该 E3 连接酶。芳基-吲哚酮支架经常出现在天然产物中,这就提出了一个问题,即 E3 配体类是否可以在天然产物和相关化合物中更广泛地发现。