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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Short-range interactions and size of ligands bound to DNA strongly influence adsorptive phase transition caused by long-range interactions.
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Short-range interactions and size of ligands bound to DNA strongly influence adsorptive phase transition caused by long-range interactions.

机译:短程相互作用和与DNA结合的配体的大小会强烈影响由长程相互作用引起的吸附相变。

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Long-range interaction between all the ligands bound to DNA molecule may give rise to adsorption with the character of phase transition of the first kind (D. Y. Lando, V. B. Teif, J. Biomol. Struct & Dynam. 18, 903-911 (2000)). In this case, the binding curve, c(c(o)), is characterized by a sudden change of the relative concentration of bound ligands ((c)) at a critical concentration of free (unbound) ligands, c(o)=c(ocr), from a low c value to a high one where c(o) is molar concentration of free ligands. Such a transition might be caused by some types of DNA condensation or changes in DNA topology. For the study of the conditions necessary for adsorption with the character of phase transition, a calculation procedure based on the method of the free energy minimum is developed. The ligand size and two types of interactions between ligands adsorbed on DNA molecule are taken into consideration: long-range interaction between all the ligands bound to DNA and contact interactions between neighboring ligands. It was found that a) Stronger long-range interaction is required for longer ligands to induce phase transition that is occurred at greater c(ocr) values; b) Pure contact interaction between neighboring ligands can not itself initiate phase transition. However contact cooperativity strongly decreases the threshold value of energy of long-range interaction necessary to give rise to the transition.
机译:与DNA分子结合的所有配体之间的长距离相互作用可能引起具有第一类相变特征的吸附(DY Lando,VB Teif,J.Biomol.Struct&Dynam.18,903-911(2000) )。在这种情况下,结合曲线c(c(o))的特征在于,在临界浓度的游离(未结合)配体c(o)=临界浓度下,结合的配体((c))的相对浓度突然变化。 c(ocr),从低c值到高c值,其中c(o)是游离配体的摩尔浓度。这种转变可能是由某些类型的DNA缩合或DNA拓扑结构的变化引起的。为了研究具有相变特性的吸附所必需的条件,建立了基于最小自由能法的计算程序。考虑了配体的大小以及吸附在DNA分子上的配体之间的两种相互作用:与DNA结合的所有配体之间的远距离相互作用以及相邻配体之间的接触相互作用。已发现:a)较长的配体需要较强的远程相互作用,以诱导在较大的c(ocr)值下发生的相变; b)相邻配体之间的纯接触相互作用本身不能引发相变。但是,接触合作性极大地降低了引起过渡所必需的远程相互作用能的阈值。

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