首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Effects for the Incorporation of Five-atom Thioacetamido Nucleic Acid (TANA) Backbone on Hybridization Thermodynamics and Kinetics of DNA Duplexes
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Effects for the Incorporation of Five-atom Thioacetamido Nucleic Acid (TANA) Backbone on Hybridization Thermodynamics and Kinetics of DNA Duplexes

机译:五原子硫代乙酰胺基核酸(TANA)骨架的掺入对DNA双链体杂交热力学和动力学的影响。

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Thermodynamic studies of nucleic acids serve not only to widen our understanding on the nature and strength of forces that stabilize nucleic acids in a myriad of structural states they assume but also to facilitate the development of databases that could be used to predict the stability and selectivity of probe/primer-sets required in a broad range of nucleic acid-based diagnostic and therapeutic protocols. In the current study, we investigated the effect of a novel, backbone-modified "thioacetamido linkage" (TANA) on thermodynamics of hybridization, binding kinetics, and conformation of a DNA duplex. The modification comprises of an extended five-atom amide (N3'-CO-CH2-S-CH2) linker, as opposed to four-atom phosphodiester linker backbone present in DNA. One to three TANA-substitutions have been introduced in the linker backbone of two thymidine residues of one of the strand of the DNA duplex. Using spectroscopic and calorimetric techniques, we observed that TANA destabilizes the DNA helix by lowering the favorable enthalpy parameter of duplex formation. TANA center dot DNA duplexes were found to adopt a conformation toward an A-type duplex as shown by circular dichroism spectroscopy studies. Analysis of differential scanning calorimetry data indicated a nonzero heat capacity change, Delta C-p, accompanying the duplex formation. The average Delta C-p change per duplex was found to be 832.5 cal mol(-1) K-1, giving an average base-pair change of 59.5 cal (mol of base pairs)(-1) K-1. Hybridization kinetic measurements using surface plasmon resonance indicated a decrease in binding affinity parameter (K-A) that originates from higher dissociation rate constants (k(d)). Furthermore, optical melting studies showed that increasing the number of modifications results in a modest change in the number of counterions taken up during duplex formation.
机译:核酸的热力学研究不仅有助于拓宽我们对将核酸稳定在假定的多种结构状态的力的性质和强度的理解,而且有助于促进可用于预测核酸的稳定性和选择性的数据库的开发。广泛的基于核酸的诊断和治疗方案中所需的探针/引物组。在当前的研究中,我们研究了新型的,骨架修饰的“硫代乙酰氨基键”(TANA)对杂交热力学,结合动力学和DNA双链体构象的影响。该修饰包括延伸的五原子酰胺(N3'-CO-CH2-S-CH2)接头,与DNA中存在的四原子磷酸二酯接头骨架相反。已经在DNA双链体之一的两个胸苷残基的接头主链中引入了1-3个TANA取代基。使用光谱和量热技术,我们观察到TANA通过降低双链形成的有利焓参数来破坏DNA螺旋的稳定性。如圆二色性光谱研究所示,发现TANA中心点DNA双链体对A型双链体采取构象。差示扫描量热数据的分析表明,伴随双链体形成,热容变化为非零,ΔC-p。发现每个双链体的平均Delta C-p变化为832.5 cal mol(-1)K-1,给出的平均碱基对变化为59.5 cal(mol碱基对)(-1)K-1。使用表面等离振子共振的杂交动力学测量表明,结合亲和力参数(K-A)的降低是由较高的解离速率常数(k(d))引起的。此外,光学熔解研究表明,增加修饰数量会导致在双链体形成过程中吸收的抗衡离子数量发生适度变化。

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