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一种对RAB11具有抑制作用的小分子的发现。

Discovery of a Small Molecule with an Inhibitory Role for RAB11.

作者信息

Lempicki Camille, Milosavljevic Julian, Laggner Christian, Tealdi Simone, Meyer Charlotte, Walz Gerd, Lang Konrad, Campa Carlo Cosimo, Hermle Tobias

机构信息

Renal Division, Department of Medicine, Faculty of Medicine, Medical Center, University of Freiburg, Hugstetter Strasse 55, 79106 Freiburg, Germany.

Atomwise Inc., 250 Sutter St #650, San Francisco, CA 94108, USA.

出版信息

Int J Mol Sci. 2024 Dec 9;25(23):13224. doi: 10.3390/ijms252313224.

Abstract

RAB11, a pivotal RabGTPase, regulates essential cellular processes such as endocytic recycling, exocytosis, and autophagy. The protein was implicated in various human diseases, including cancer, neurodegenerative disorders, viral infections, and podocytopathies. However, a small-molecular inhibitor is lacking. The complexity and workload associated with potential assays make conducting large-scale screening for RAB11 challenging. We employed a tiered approach for drug discovery, utilizing deep learning-based computational screening to preselect compounds targeting a specific pocket of RAB11 protein with experimental validation by an in vitro platform reflecting RAB11 activity through the exocytosis of GFP. Further validation included the exposure of by drug feeding. In silico pre-screening identified 94 candidates, of which 9 were confirmed using our in vitro platform for Rab11 activity. Focusing on compounds with high potency, we assessed autophagy, which independently requires RAB11, and validated three of these compounds. We further analyzed the dose-response relationship, observing a biphasic, potentially hormetic effect. Two candidate compounds specifically caused a shift in Rab11 vesicles to the cell periphery, without significant impact on Rab5 or Rab7. larvae exposed to another candidate compound with predicted oral bioavailability exhibited minimal toxicity, subcellular dispersal of endogenous Rab11, and a decrease in RAB11-dependent nephrocyte function, further supporting an inhibitory role. Taken together, the combination of computational screening and experimental validation allowed the identification of small molecules that modify the function of Rab11. This discovery may further open avenues for treating RAB11-associated disorders.

摘要

RAB11是一种关键的RabGTP酶,可调节内吞循环、胞吐作用和自噬等重要细胞过程。该蛋白与多种人类疾病有关,包括癌症、神经退行性疾病、病毒感染和足细胞病。然而,目前缺乏小分子抑制剂。潜在检测方法的复杂性和工作量使得对RAB11进行大规模筛选具有挑战性。我们采用了一种分层的药物发现方法,利用基于深度学习的计算筛选来预选靶向RAB11蛋白特定口袋的化合物,并通过一个体外平台进行实验验证,该平台通过绿色荧光蛋白的胞吐作用反映RAB11活性。进一步的验证包括通过药物投喂进行暴露。计算机预筛选确定了94个候选化合物,其中9个在我们的RAB11活性体外平台上得到了证实。我们聚焦于高效能化合物,评估了独立需要RAB11的自噬,并验证了其中3种化合物。我们进一步分析了剂量反应关系,观察到一种双相的、可能是 hormetic效应。两种候选化合物特别导致Rab11囊泡向细胞周边转移,而对Rab5或Rab7没有显著影响。暴露于另一种具有预测口服生物利用度的候选化合物的幼虫表现出最小的毒性、内源性Rab11的亚细胞分散以及RAB11依赖性肾细胞功能的下降,进一步支持了其抑制作用。综上所述,计算筛选和实验验证相结合,使得能够鉴定出改变Rab11功能的小分子。这一发现可能进一步为治疗与RAB11相关的疾病开辟道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c27f/11642393/dcbe370bafe9/ijms-25-13224-g001.jpg

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