Barhoosh Huda, Dixit Anjali, Cochrane Wesley G, Cavett Valerie, Prince Robin N, Blair Brooke O, Ward Fred R, McClure Kim F, Patten Phillip A, Paulick Margot G, Paegel Brian M
Department of Pharmaceutical Sciences, University of California, Irvine, California 92697, United States.
Initial Therapeutics, South San Francisco, California 94080, United States.
ACS Cent Sci. 2024 Oct 4;10(10):1960-1968. doi: 10.1021/acscentsci.4c01218. eCollection 2024 Oct 23.
Small molecule probes exist for only ∼2% of human proteins because most lack functional binding pockets or cannot be assayed for high-throughput screening. Selective translation modulation circumvents canonical druggability and assay development constraints by using in vitro transcription-translation (IVTT) as a universal biochemical screening assay. We developed an IVTT activity assay by fusing a GFP reporter to various target gene sequences and screened the target sequences for inhibitors in microfluidic picoliter-scale droplets using a 5,348-member translation inhibitor DNA-encoded library (DEL). Screening a proof-of-concept PCSK9-GFP reporter yielded many hits; 6/7 hits inhibited PCSK9-GFP IVTT (IC 1-20 μM), and the lead hit reduced PCSK9 levels in HepG2 cells. Preliminary selectivity was informed by counterscreening the DEL against a frameshift mutant PCSK9-GFP reporter. A plug-and-play approach to assay development and screening was demonstrated by scouting the DEL for activity using reporter genes of targets with difficult-to-assay or even unknown function (RPL27, KRAS, MST1, USO1). This microfluidic IVTT DEL screening platform could scale probe discovery to the human proteome and perhaps more broadly across the tree of life.
小分子探针仅针对约2%的人类蛋白质存在,因为大多数蛋白质缺乏功能性结合口袋或无法用于高通量筛选检测。选择性翻译调控通过使用体外转录-翻译(IVTT)作为通用生化筛选检测方法,规避了传统的可成药性和检测方法开发的限制。我们通过将绿色荧光蛋白(GFP)报告基因与各种靶基因序列融合,开发了一种IVTT活性检测方法,并使用一个包含5348个成员的翻译抑制剂DNA编码文库(DEL),在微流控皮升规模的液滴中筛选靶序列的抑制剂。对概念验证性的PCSK9-GFP报告基因进行筛选产生了许多命中结果;7个命中结果中有6个抑制了PCSK9-GFP的IVTT(IC50为1-20 μM),并且先导命中结果降低了HepG2细胞中PCSK9的水平。通过针对移码突变的PCSK9-GFP报告基因对DEL进行反筛选,获得了初步的选择性信息。通过使用具有难以检测甚至未知功能的靶标的报告基因(RPL27、KRAS、MST1、USO1)对DEL进行活性探索,展示了一种即插即用的检测方法开发和筛选方法。这种微流控IVTT DEL筛选平台可以将探针发现扩展到人类蛋白质组,甚至可能更广泛地应用于整个生命树。