体内
小分子
计算生物学
表型筛选
生物
体外
表型
高通量筛选
生物化学
遗传学
基因
作者
Barbara M. Grüner,Christopher J. Schulze,Dian Yang,Daisuke Ogasawara,Melissa M. Dix,Zoe Rogers,Chen Hua Chuang,Christopher D. McFarland,Shin Heng Chiou,J. Mark Brown,Benjamin F. Cravatt,Matthew Bogyo,Monte M. Winslow
出处
期刊:Nature Methods
[Springer Nature]
日期:2016-09-12
卷期号:13 (10): 883-889
被引量:56
摘要
The combination of cellular barcoding and treatment with a library of small molecules before injecting the treated cells into mice allows the screening for compounds that inhibit metastatic seeding. Phenotype-based small-molecule screening is a powerful method to identify molecules that regulate cellular functions. However, such screens are generally performed in vitro under conditions that do not necessarily model complex physiological conditions or disease states. Here, we use molecular cell barcoding to enable direct in vivo phenotypic screening of small-molecule libraries. The multiplexed nature of this approach allows rapid in vivo analysis of hundreds to thousands of compounds. Using this platform, we screened >700 covalent inhibitors directed toward hydrolases for their effect on pancreatic cancer metastatic seeding. We identified multiple hits and confirmed the relevant target of one compound as the lipase ABHD6. Pharmacological and genetic studies confirmed the role of this enzyme as a regulator of metastatic fitness. Our results highlight the applicability of this multiplexed screening platform for investigating complex processes in vivo.
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