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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Effect of persistence length on binding of DNA to polyions and overcharging of their intermodular complexes in aqueous and in 1-methyl-3-octyI imidazolium chloride ionic liquid solutions
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Effect of persistence length on binding of DNA to polyions and overcharging of their intermodular complexes in aqueous and in 1-methyl-3-octyI imidazolium chloride ionic liquid solutions

机译:持久性长度对DNA与聚离子结合及其在1-甲基-3-辛基氯化咪唑鎓离子液体溶液中的模间复合物过度充电的影响

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摘要

The effect of persistence length on the intermolecular binding of DNA (200 bp, persistence length I_p = 50 nm, polyanion) with three proteins, gelatin B (GB) (/p = 2 nm, polyampholyte chain), bovine serum albumin (BSA) (I_p = 7 nm, polyampholyte colloid), gelatin A (GA) (I_p = 10 nm, polyampholyte chain), and a polysaccharide chitosan (I_p = 17 nm, polycation), was investigated in aqueous and in 1 -methyl-3-octyl imidazolium chloride ionic liquid ([C8mim][CI]) solutions. In DNA-GB and DNA-BSA solutions complexation primarily arises from surface patch binding whereas DNA-chitosan and DNA-GA binding was predominantly governed by electrostatic forces. These occurred at well defined pH values: (i) at pHc associative interactions ensued and soluble complexes were formed, (ii) at pH4 soluble complexes coalesced to give rise to liquid-liquid phase separation (coacervation) and (iii) at pH_(prep) formation of large insoluble complexes drove the solution towards liquid-solid phase separation. A universal phase diagram encapsulating the aforesaid interactions can be made using the persistence length of polyion as an independent variable. DNA formed overcharged intermolecular complexes with all these polyions when the polyion concentration was more than the concentration required to produce charge neutralized complexes (disproportionate binding). In IL solutions maximum binding occurred when 0.075 < [IL] < 0.10% (w/v) and the effect of overcharging was substantially screened. The extent of overcharge was a monotonous increasing function of the polyion persistence length. Results clearly revealed that DNA-polyion binding was hierarchical in polyion concentration and persistence length. Overcharging of the DNA-polyion complex was found to be ubiquitous for the polyions used in the present study.
机译:持久长度对DNA与分子间结合的影响(200 bp,持久长度I_p = 50 nm,聚阴离子)与三种蛋白质,明胶B(GB)(/ p = 2 nm,多两性链),牛血清白蛋白(BSA) (I_p = 7 nm,多两性离子胶体),明胶A(GA)(I_p = 10 nm,多两性离子链)和多糖壳聚糖(I_p = 17 nm,聚阳离子),在水溶液和1-甲基-3-辛基咪唑氯化物离子液体([C8mim] [CI])溶液。在DNA-GB和DNA-BSA溶液中,复合物主要来自表面膜的结合,而DNA-壳聚糖和DNA-GA的结合主要受静电力控制。它们在明确定义的pH值下发生:(i)在pHc处发生缔合相互作用并形成可溶性复合物,(ii)在pH4处形成的可溶性复合物聚结以引起液-液相分离(凝聚),以及(iii)在pH_ {prep )大型不溶性配合物的形成将溶液推向液固相分离。可以使用聚离子的持续长度作为自变量来制作封装上述相互作用的通用相图。当聚离子的浓度大于产生电荷中和的复合物(不成比例的结合)所需的浓度时,DNA与所有这些聚离子形成了过度充电的分子间复合物。在IL溶液中,当0.075 <[IL] <0.10%(w / v)时,最大结合发生,并且充分筛选了过度充电的效果。过充电的程度是聚离子持久长度的单调增加函数。结果清楚地表明,DNA-聚离子结合在聚离子浓度和持续时间上是分层的。对于本研究中使用的聚离子,普遍发现DNA-聚离子复合物的过度充电是普遍存在的。

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