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聚乙二醇水溶液的分子结构与双链DNA分子紧密性之间的关系

[Relationship between the molecular structure of aqueous solutions of polyethylene glycol and the compactness of double-stranded DNA molecules].

作者信息

Salianov V I, Pogrebniak V G, Skuridin S G, Lortkipanidze G B, Chidzhavadze Z G

出版信息

Mol Biol (Mosk). 1978 May-Jun;12(3):485-95.

PMID:661817
Abstract

The dependence of viscosity of the water solutions of poly(ethylene glycol) (PEG) on the molecular weight has been studied. It has been shown that there is a "transitional" region in PEG properties which accounts for the formation of fluctuation polymer network of the PEG molecules. It has been shown that the "transitional" region in properties of PEG which appears at a certain concentration of PEG (CtrPEG) is characteristic of the PEG preparations with molecular weights exceeding 600 and dependence of the value of CtrPEG on the molecular weight of PEG was obtained. Compactization of double-stranded DNA molecules in PEG-containing water-salt solutions has been studied and the dependence of the value of CcrPEG, . i.e. the concentration of PEG at which the compact particles of DNA appear in the solution, on the molecular weight of PEG was obtained. The correlation between these two dependences reflecting quite different physico-chemical processes shows that the double-stranded DNA molecules are constrained within the polymer network of the PEG molecules. The influence of ionic strength and ionic composition of the solution on the formation of a compact form was investigated. The transition of the DNA molecules from a linear to a compact state may occur only at a definite value of ionic strength of the solution. This transition may occur at the change of K+ for Na+ cations (at a constant value of CPEG). The extent of compactization of the DNA molecules in PEG-containing water-salt solutions is monitored by the molecular structure and by the ionic strength of the solvent. It is supposed that the peculiarities of compactization of the DNA molecules in PEG-containing water-salt solutions reflect some characteristics of conformational transitions of the DNA molecules which occur in vivo.

摘要

研究了聚乙二醇(PEG)水溶液的粘度对分子量的依赖性。结果表明,PEG性质中存在一个“过渡”区域,这解释了PEG分子波动聚合物网络的形成。结果表明,在一定PEG浓度(CtrPEG)下出现的PEG性质的“过渡”区域是分子量超过600的PEG制剂的特征,并获得了CtrPEG值对PEG分子量的依赖性。研究了含PEG的水盐溶液中双链DNA分子的压缩情况,并获得了CcrPEG值(即溶液中出现DNA紧密颗粒时的PEG浓度)对PEG分子量的依赖性。这两种反映截然不同物理化学过程的依赖性之间的相关性表明,双链DNA分子被限制在PEG分子的聚合物网络内。研究了溶液的离子强度和离子组成对紧密形式形成的影响。DNA分子从线性状态转变为紧密状态可能仅在溶液的特定离子强度值下发生。这种转变可能在K+被Na+阳离子取代时发生(在CPEG恒定值下)。含PEG的水盐溶液中DNA分子的压缩程度通过分子结构和溶剂的离子强度来监测。据推测,含PEG的水盐溶液中DNA分子压缩的特殊性反映了体内发生的DNA分子构象转变的一些特征。

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