Steffek Micah, Helgason Elizabeth, Popovych Nataliya, Rougé Lionel, Bruning John M, Li Ke Sherry, Burdick Daniel J, Cai Jianping, Crawford Terry, Xue Jing, Decurtins Willy, Fang Chunlin, Grubers Felix, Holliday Michael J, Langley Allyson, Petersen Ann, Satz Alexander Lee, Song Aimin, Stoffler Daniel, Strebel Quentin, Tom Jeffrey Y K, Skelton Nicholas, Staben Steven T, Wichert Moreno, Mulvihill Melinda M, Dueber Erin C
Biochemical and Cellular Pharmacology, Genentech, 1 DNA Way, South San Francisco, California 94080, United States.
Early Discovery Biochemistry, Genentech, 1 DNA Way, South San Francisco, California 94080, United States.
Biochemistry. 2023 Feb 7;62(3):633-644. doi: 10.1021/acs.biochem.1c00682. Epub 2022 Jan 5.
Autophagy-related proteins (Atgs) drive the lysosome-mediated degradation pathway, autophagy, to enable the clearance of dysfunctional cellular components and maintain homeostasis. In humans, this process is driven by the mammalian Atg8 (mAtg8) family of proteins comprising the LC3 and GABARAP subfamilies. The mAtg8 proteins play essential roles in the formation and maturation of autophagosomes and the capture of specific cargo through binding to the conserved LC3-interacting region (LIR) sequence within target proteins. Modulation of interactions of mAtg8 with its target proteins via small-molecule ligands would enable further interrogation of their function. Here we describe unbiased fragment and DNA-encoded library (DEL) screening approaches for discovering LC3 small-molecule ligands. Both strategies resulted in compounds that bind to LC3, with the fragment hits favoring a conserved hydrophobic pocket in mATG8 proteins, as detailed by LC3A-fragment complex crystal structures. Our findings demonstrate that the malleable LIR-binding surface can be readily targeted by fragments; however, rational design of additional interactions to drive increased affinity proved challenging. DEL libraries, which combine small, fragment-like building blocks into larger scaffolds, yielded higher-affinity binders and revealed an unexpected potential for reversible, covalent ligands. Moreover, DEL hits identified possible vectors for synthesizing fluorescent probes or bivalent molecules for engineering autophagic degradation of specific targets.
自噬相关蛋白(Atgs)驱动溶酶体介导的降解途径——自噬,以清除功能失调的细胞成分并维持体内平衡。在人类中,这一过程由包含LC3和GABARAP亚家族的哺乳动物Atg8(mAtg8)蛋白家族驱动。mAtg8蛋白在自噬体的形成和成熟以及通过与靶蛋白内保守的LC3相互作用区域(LIR)序列结合来捕获特定货物方面发挥着重要作用。通过小分子配体调节mAtg8与其靶蛋白的相互作用,将能够进一步探究它们的功能。在这里,我们描述了用于发现LC3小分子配体的无偏向片段和DNA编码文库(DEL)筛选方法。两种策略都产生了与LC3结合的化合物,正如LC3A-片段复合物晶体结构所详细显示的那样,片段命中物倾向于mATG8蛋白中一个保守的疏水口袋。我们的研究结果表明,可塑的LIR结合表面很容易被片段靶向;然而,设计额外的相互作用以提高亲和力的合理设计被证明具有挑战性。DEL文库将小的、类似片段的构建块组合成更大的支架,产生了更高亲和力的结合物,并揭示了可逆共价配体的意外潜力。此外,DEL命中物确定了用于合成荧光探针或二价分子以工程化特定靶标的自噬降解的可能载体。