Rapid and Affordable High Throughput Screening of SARS-CoV-2 Variants Using Denaturing High-Performance Liquid Chromatography Analysis

IF 2 Q4 VIROLOGY
M. Turba, D. Mion, S. Papadimitriou, F. Taddei, G. Dirani, V. Sambri, F. Gentilini
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Abstract

Mutations in the receptor binding domain (RBD) of SARS-CoV-2 alter the infectivity, pathogenicity, and transmissibility of new variants of concern (VOCs). In addition, those mutations cause immune escape, undermining the population immunity induced by ongoing mass vaccination programs. There is an urgent need for novel strategies and techniques aimed at the surveillance of the active emergence and spread of the VOCs. The aim of this study was to provide a quick, cheap and straightforward denaturing high-performance liquid chromatography (DHPLC) method for the prompt identification of the SARS-CoV-2 VOCs. Two PCRs were designed to target the RBD region, spanning residues N417 through N501 of the Spike protein. Furthermore, a DHPLC screening analysis was set up. The screening consisted of mixing the unknown sample with a standard sample of a known variant, denaturing at high temperature, renaturing at room temperature followed by a 2-minute run using the WAVE DHPLC system to detect the heteroduplexes which invariably form whenever the unknown sample has a nucleotide difference with respect to the standard used. The workflow was able to readily detect all the variants including B.1.1.7, P.1, B.1.585 B.1. 617.2 and lineages at a very affordable cost. The DHPLC analysis was robust being able to identify variants, even in the case of samples with very unbalanced target concentrations including those samples at the limit of detection. This approach has the potential of greatly expediting surveillance of the SARS-CoV-2 variants.
变性高效液相色谱分析快速、经济高效地筛选严重急性呼吸系统综合征冠状病毒2型变异株
SARS-CoV-2受体结合域(RBD)的突变改变了新关注变异体(VOCs)的传染性、致病性和传播性。此外,这些突变引起免疫逃逸,破坏了正在进行的大规模疫苗接种计划引起的人群免疫力。目前迫切需要新的策略和技术来监测挥发性有机化合物的主动出现和扩散。本研究的目的是提供一种快速、廉价、直接的变性高效液相色谱(DHPLC)方法来快速鉴定SARS-CoV-2挥发性有机化合物。设计了两个靶向RBD区域的pcr,跨越了Spike蛋白的N417至N501残基。建立了DHPLC筛选分析方法。筛选包括将未知样品与已知变体的标准样品混合,在高温下变性,在室温下再变性,然后使用WAVE DHPLC系统运行2分钟,以检测每当未知样品与所用标准样品具有核苷酸差异时总是形成的异源双工。该工作流程能够很容易地检测到包括B.1.1.7、P.1、B.1.585 B.1在内的所有变体。617.2和血统,非常实惠的成本。DHPLC分析是稳健的,能够识别变异,即使在样品的目标浓度非常不平衡的情况下,包括那些在检测极限的样品。这种方法有可能大大加快对SARS-CoV-2变体的监测。
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