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A Broadly Applicable Assay for Rapidly and Accurately Quantifying DNA Surface Coverage on Diverse Particles

机译:快速准确地定量不同颗粒上的DNA表面覆盖率的广泛应用的检测方法

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摘要

DNA-modified particles are used extensively for applications in sensing, material science, and molecular biology. The performance of such DNA-modified particles is greatly dependent on the degree of surface coverage, but existing methods for quantitation can only be employed for certain particle compositions and/or conjugation chemistries. We have developed a simple and broadly applicable exonuclease III (Exo III) digestion assay based on the cleavage of phosphodiester bonds—a universal feature of DNA-modified particles—to accurately quantify DNA probe surface coverage on diverse, commonly used particles of different compositions, conjugation chemistries, and sizes. Our assay utilizes particle-conjugated, fluorophore-labeled probes that incorporate two abasic sites; these probes are hybridized to a complementary DNA (cDNA) strand, and quantitation is achieved via cleavage and digestion of surface-bound probe DNA via Exo III’s apurinic endonucleolytic and exonucleolytic activities. The presence of the two abasic sites in the probe greatly speeds up the enzymatic reaction without altering the packing density of the probes on the particles. Probe digestion releases a signal-generating fluorophore and liberates the intact cDNA strand to start a new cycle of hybridization and digestion, until all fluorophore tags have been released. Since the molar ratio of fluorophore to immobilized DNA is 1:1, DNA surface coverage can be determined accurately based on the complete release of fluorophores. Our method delivers accurate, rapid, and reproducible quantitation of thiolated DNA on the surface of gold nanoparticles, and also performs equally well with other conjugation chemistries, substrates, and particle sizes, and thus offers a broadly useful assay for quantitation of DNA surface coverage.
机译:DNA修饰的颗粒广泛用于传感,材料科学和分子生物学中。这种DNA修饰的颗粒的性能在很大程度上取决于表面覆盖的程度,但是现有的定量方法只能用于某些颗粒组成和/或结合化学。我们基于磷酸二酯键的切割(DNA修饰的颗粒的普遍特征),开发了一种简单且广泛适用的核酸外切酶III(Exo III)消化测定法,以准确定量不同组成的各种常用颗粒上DNA探针的表面覆盖率,结合化学和大小。我们的测定利用结合了两个无碱基位点的结合了颗粒的荧光团标记探针。这些探针与互补的DNA(cDNA)链杂交,并通过Exo III的嘌呤内切核酸酶和外切核酸酶活性对表面结合的探针DNA进行切割和消化来实现定量。探针中两个无碱基位点的存在极大地加快了酶促反应,而不会改变探针在颗粒上的堆积密度。探针消化释放出一个产生信号的荧光团,并释放完整的cDNA链,从而开始一个新的杂交和消化循环,直到所有的荧光团标签都被释放为止。由于荧光团与固定化DNA的摩尔比为1:1,因此可以基于荧光团的完全释放来准确确定DNA表面覆盖率。我们的方法可对金纳米颗粒表面上的巯基化DNA进行准确,快速和可重现的定量,并且与其他缀合化学,底物和粒径大小同样出色,因此为定量DNA表面覆盖提供了广泛有用的测定方法。

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