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用于检测癌症生物标志物的分子信标中的DNA链置换机制。

DNA Strand Replacement Mechanism in Molecular Beacons Encoded for the Detection of Cancer Biomarkers.

作者信息

Stobiecka Magdalena, Chalupa Agata

机构信息

Department of Biophysics, Warsaw University of Life Sciences (SGGW) , 02776 Warsaw, Poland.

Institute of Nanoparticle Nanocarriers , 11010 Barczewo, Poland.

出版信息

J Phys Chem B. 2016 Jun 2;120(21):4782-90. doi: 10.1021/acs.jpcb.6b03475. Epub 2016 May 23.

Abstract

Signaling properties of a fluorescent hairpin oligonucleotide molecular beacon (MB) encoded to recognize protein survivin (Sur) mRNA have been investigated. The process of complementary target binding to SurMB with 20-mer loop sequence is spontaneous, as expected, and characterized by a high affinity constant (K = 2.51 × 10(16) M(-1)). However, the slow kinetics at room temperature makes it highly irreversible. To understand the intricacies of target binding to MB, a detailed kinetic study has been performed to determine the rate constants and activation energy Ea for the reaction at physiological temperature (37 °C). Special attention has been paid to assess the value of Ea in view of reports of negative activation enthalpy for some nucleic acid reactions that would make the target binding even slower at increasing temperatures in a non-Arrhenius process. The target-binding rate constant determined is k = 3.99 × 10(3) M(-1) s(-1) at 37 °C with Ea = 28.7 ± 2.3 kcal/mol (120.2 ± 9.6 kJ/mol) for the temperature range of 23 to 55 °C. The positive high value of Ea is consistent with a kinetically controlled classical Arrhenius process. We hypothesize that the likely contribution to the activation energy barrier comes from the SurMB stem melting (tm = 53.7 ± 0.2 °C), which is a necessary step in the completion of target strand hybridization with the SurMB loop. A low limit of detection (LOD = 2 nM) for target tDNA has been achieved. Small effects of conformational polymorphs of SurMB have been observed on melting curves. Although these polymorphs could potentially cause a negative Ea, their effect on kinetic transients for target binding is negligible. No toehold preceding steps in the mechanism of target binding were identified.

摘要

对一种经编码可识别蛋白质生存素(Sur)mRNA的荧光发夹寡核苷酸分子信标(MB)的信号特性进行了研究。如预期的那样,具有20聚体环序列的互补靶标与SurMB的结合过程是自发的,其特征在于具有高亲和力常数(K = 2.51×10¹⁶ M⁻¹)。然而,室温下缓慢的动力学使其具有高度不可逆性。为了理解靶标与MB结合的复杂性,已进行了详细的动力学研究,以确定生理温度(37°C)下反应的速率常数和活化能Ea。鉴于一些核酸反应的负活化焓的报道,特别关注评估Ea的值,这将使靶标结合在非阿伦尼乌斯过程中随着温度升高而变得更慢。在37°C下测定的靶标结合速率常数为k = 3.99×10³ M⁻¹ s⁻¹,在23至55°C的温度范围内Ea = 28.7±2.3 kcal/mol(120.2±9.6 kJ/mol)。Ea的高正值与动力学控制的经典阿伦尼乌斯过程一致。我们假设对活化能垒的可能贡献来自SurMB茎的解链(tm = 53.7±0.2°C),这是靶标链与SurMB环完成杂交的必要步骤。已实现对靶标tDNA的低检测限(LOD = 2 nM)。观察到SurMB构象多晶型对熔解曲线的影响较小。尽管这些多晶型可能潜在地导致负Ea,但它们对靶标结合动力学瞬变的影响可忽略不计。在靶标结合机制中未发现前导链步骤。

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