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Characterization of a novel DNA polymerase activity assay enabling sensitive quantitative and universal detection of viable microbes

机译:表征新型DNA聚合酶活性测定法可对活菌进行灵敏定量和通用检测

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摘要

During the past 50 years, in vitro measurement of DNA polymerase activity has become an essential molecular biology tool. Traditional methods used to measure DNA polymerase activity in vitro are undesirable due to the usage of radionucleotides. Fluorescence-based DNA polymerase assays have been developed; however, they also suffer from various limitations. Herein we present a rapid, highly sensitive and quantitative assay capable of measuring DNA polymerase extension activity from purified enzymes or directly from microbial lysates. When tested with purified DNA polymerase, the assay detected as little as 2 × 10−11 U of enzyme (∼50 molecules), while demonstrating excellent linearity (R2 = 0.992). The assay was also able to detect endogenous DNA polymerase extension activity down to less than 10 colony forming units (cfu) of input Gram-positive or Gram-negative bacteria when coupled to bead mill lysis while maintaining an R2 = 0.999. Furthermore, preliminary evidence presented here suggests that DNA polymerase extension activity is an indicator of microbial viability, as demonstrated by the reproducibly strong concordance between assay signal and bacterial colony formation. Together, the innovative methodology described here represents a significant advancement toward sensitive detection of potentially any microorganism containing active DNA polymerase within a given sample matrix.
机译:在过去的50年中,DNA聚合酶活性的体外测量已成为一种必不可少的分子生物学工具。由于使用放射性核苷酸,用于体外测量DNA聚合酶活性的传统方法是不可取的。已经开发了基于荧光的DNA聚合酶测定法。然而,它们也遭受各种限制。本文中,我们提出了一种快速,高度灵敏和定量的测定方法,该方法能够从纯化的酶或直接从微生物裂解物中测量DNA聚合酶的延伸活性。用纯化的DNA聚合酶测试时,该检测法可检测到酶的低至2×10 −11 U(约50个分子),同时表现出出色的线性(R 2 = 0.992 )。该方法还能够检测与内源性革兰氏阳性或革兰氏阴性细菌结合的低至少于10个菌落形成单位(cfu)的内源性DNA聚合酶延伸活性,当与珠磨机裂解偶联时,保持R 2 = 0.999。此外,此处提供的初步证据表明,DNA聚合酶的延伸活性是微生物生存能力的指标,如检测信号和细菌菌落形成之间可重复的强一致性所证明。总之,此处描述的创新方法论代表了对给定样品基质中可能含有活性DNA聚合酶的任何微生物进行灵敏检测的重大进展。

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