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CRISPR Enzyme Kinetics for Molecular Diagnostics

机译:用于分子诊断的CRISPR酶动力学

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CRISPR-diagnostic assays have gained significant interest in the last few years. This interest has grown rapidly during the current COVID-19 pandemic, where CRISPR-diagnostics have been frontline contenders for rapid testing solutions. This surge in CRISPR-diagnostic research prompts the following question: what exactly are the achievable limits of detection and associated assay times enabled by the kinetics of enzymes such as Cas12 and Cas13? To explore this question, we here present a model based on Michaelis-Menten enzyme kinetics theory applied to CRISPR enzymes. We use the model to develop analytical solutions for reaction kinetics and develop back-of-the-envelope criteria to validate and check for consistency in reported enzyme kinetic parameters. We applied our analyses to all studies known to us, which report Michaelis-Menten-type kinetic data for CRISPR-associated enzymes. These studies include all subtypes of Cas12 and Cas13 and orthologs. We found all but one study clearly violate at least two of our three rules and therefore present data that violate basic physical limits. We performed an experimental study of reaction kinetics of LbCas12a with both ssDNA and dsDNA activators and use these data to validate our model and its predicted scaling. The validated model is used to explore CRISPR reaction time scales and the degree of reaction completion for practically relevant target concentrations applicable to CRISPR-diagnostic assays. The results have broad implications for achievable limits of detection and assay times of emerging, amplification-free CRISPR-detection methods.
机译:CRISPR诊断分析在过去几年中获得了极大的兴趣。在当前的2019冠状病毒疾病流行中,这种兴趣迅速增长,其中CRISPR诊断一直是快速测试解决方案的前沿竞争者。CRISPR诊断研究的激增引发了以下问题:Cas12和Cas13等酶的动力学能够实现的检测极限和相关分析时间到底是多少?为了探索这个问题,我们在这里提出了一个基于米氏酶动力学理论的模型,应用于CRISPR酶。我们使用该模型开发反应动力学的分析解决方案,并开发封套后标准,以验证和检查报告的酶动力学参数的一致性。我们将分析应用于我们已知的所有研究,这些研究报告了CRISPR相关酶的米氏动力学数据。这些研究包括Cas12和Cas13的所有亚型以及同源基因。我们发现,除了一项研究外,所有研究都明显违反了我们的三条规则中的至少两条,因此提供的数据违反了基本的物理极限。我们对LbCas12a与单链DNA和双链DNA激活剂的反应动力学进行了实验研究,并利用这些数据验证了我们的模型及其预测的标度。经验证的模型用于探索CRISPR反应时间标度和适用于CRISPR诊断分析的实际相关目标浓度的反应完成程度。该结果对新出现的、无扩增的CRISPR检测方法的检测限和分析时间具有广泛的影响。

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