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'Three-Dimensional Hybridization' with Polyvalent DNA-Gold Nanoparticle Conjugates

机译:多价DNA-金纳米粒子结合物的“三维杂交”

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We have determined the minimum number of base pairings necessary to stabilize DNA-Au NP aggregates as a function of salt concentration for particles between 15 and 150 nm in diameter. Significantly, we find that sequences containing a single base pair interaction are capable of effecting hybridization between 150 nm DNA-Au NPs. While traditional DNA hybridization involves two strands interacting in one dimension (1D, Z), we propose that hybridization in the context of an aggregate of polyvalent DNA-Au NP conjugates occurs in three dimensions (many oligonucleotides oriented perpendicular to the X, Y plane engage in base pairing), making nanoparticle assembly possible with three or fewer base pairings per DNA strand. These studies enabled us to compare the stability of duplex DNA free in solution and bound to the nanoparticle surface. We estimate that 4-8, 6-19, or 8-33 additional DNA bases must be added to free duplex DNA to achieve melting temperatures equivalent to hybridized systems formed from 15, 60, or 150 nm DNA-Au NPs, respectively. In addition, we estimate that the equilibrium binding constant (K_(eq)) for 15 nm DNA-Au NPs (3 base pairs) is ~3 orders of magnitude higher than the K_(eq) for the corresponding nanoparticle free system.
机译:我们已经确定了稳定DNA-Au NP聚集体所需的最小碱基配对数,该配对是直径为15至150 nm的颗粒的盐浓度的函数。重要的是,我们发现包含单个碱基对相互作用的序列能够影响150 nm DNA-Au NP之间的杂交。传统的DNA杂交涉及一维相互作用的两条链(1D,Z),我们建议在多价DNA-Au NP共轭物的聚集体中进行杂交,发生在三个维度(许多垂直于X,Y平面的寡核苷酸参与在碱基配对中),使每条DNA链具有三个或更少的碱基配对的纳米颗粒组装成为可能。这些研究使我们能够比较溶液中游离并结合到纳米颗粒表面的双链DNA的稳定性。我们估计必须将4-8、6-19或8-33其他DNA碱基添加到游离双链体DNA中,以达到分别相当于15、60或150 nm DNA-Au NP形成的杂交系统的熔化温度。此外,我们估计15 nm DNA-Au NP(3个碱基对)的平衡结合常数(K_(eq))比相应的无纳米粒子的系统的K_(eq)高约3个数量级。

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