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A universal method for sensitive and cell-free detection of CRISPR-associated nucleases

机译:一种灵敏和无细胞检测CRISPR相关核酸酶的通用方法

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摘要

A multitude of biological applications for CRISPR-associated (Cas) nucleases have propelled the development of robust cell-based methods for quantitation of on- and off-target activities of these nucleases. However, emerging applications of these nucleases require cell-free methods that are simple, sensitive, cost effective, high throughput, multiplexable, and generalizable to all classes of Cas nucleases. Current methods for cell-free detection are cumbersome, expensive, or require sophisticated sequencing technologies, hindering their widespread application beyond the field of life sciences. Developing such cell-free assays is challenging for multiple reasons, including that Cas nucleases are single-turnover enzymes that must be present in large excess over their substrate and that different classes of Cas nucleases exhibit wildly different operating mechanisms. Here, we report the development of a cell-free method wherein Cas nuclease activity is amplified via an in vitro transcription reaction that produces a fluorescent RNA:small-molecule adduct. We demonstrate that our method is sensitive, detecting activity from low nanomolar concentrations of several families of Cas nucleases, and can be conducted in a high-throughput microplate fashion with a simple fluorescent-based readout. We provide a mathematical framework for quantifying the activities of these nucleases and demonstrate two applications of our method, namely the development of a logic circuit and the characterization of an anti-CRISPR protein. We anticipate our method will be valuable to those studying Cas nucleases and will allow the application of Cas nuclease beyond the field of life sciences.
机译:CRISPR相关(Cas)核酸酶的许多生物学应用推动了基于鲁棒细胞的定量这些核酸酶的靶向和脱靶活性的方法的发展。但是,这些核酸酶的新兴应用需要无细胞方法,该方法应简单,灵敏,具有成本效益,高通量,可复用且可推广到所有类型的Cas核酸酶。当前用于无细胞检测的方法麻烦,昂贵,或者需要复杂的测序技术,从而阻碍了它们在生命科学领域之外的广泛应用。由于多种原因,开发此类无细胞测定法具有挑战性,包括Cas核酸酶是单周转酶,必须比其底物过量大量存在,并且不同类的Cas核酸酶表现出截然不同的操作机制。在这里,我们报告了一种无细胞方法的发展,其中Cas核酸酶活性是通过产生荧光RNA:小分子加合物的体外转录反应来扩增的。我们证明了我们的方法是灵敏的,可以从几个家族的Cas核酸酶的低纳摩尔浓度中检测活性,并且可以通过基于简单荧光读数的高通量微孔板方式进行。我们提供了一个数学框架来量化这些核酸酶的活性,并展示了我们方法的两个应用,即逻辑电路的开发和抗CRISPR蛋白的表征。我们预计我们的方法对那些研究Cas核酸酶的人将是有价值的,并且将使Cas核酸酶的应用超出生命科学领域。

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