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[中性盐对与碘相互作用的糖原构象状态的影响]

[Effects of neutral salts on the conformational state of glycogen, interacting with iodine].

作者信息

Bobrova L N

出版信息

Biokhimiia. 1983 Nov;48(11):1870-8.

PMID:6318837
Abstract

The effects of salts on helix formation of linear (outer) chains of branched alpha-glucane, muscle glycogen, was judged upon by the state of polyiodine chromophore of the iodine reaction surrounded by a polysaccharide asymmetric helix and recorded by the circular dichroism method. It was demonstrated that apart from the known changes in the absorption of the iodine-glycogen complex the salts induce changes in the ellipticity by affecting the helix formation of the linear chains of the polysaccharide. The nature of these effects depends on the type and concentration of the salt used. Monovalent metal salts produce a more favourable effect on helix formation than the divalent metal salts. Among divalent metal salts transient metal salts produce a weaker effect. The action of neutral salts on helix formation is of dual nature: helix formation and helix destruction. The helix formation is largely impaired by high concentrations of LiCl (greater than 6 M) or CaCl2 (greater than 2M). It was shown that a certain role in the mechanism of neutral salt action on helix formation belongs both to electrostatic and lyotropic effects. The latter determine the effects of salts on helix formation at concentrations above the monomolar one, when the specific effect of a salt is especially well-pronounced. The salts which enhance the orderliness of H2O structure produce a favourable effect on helix formation of the linear polysaccharide chains and, consequently, on the iodine reaction. In terms of molar efficiency of their action on the iodine reaction the salts correspond to the Hofmeister lyotropic sequence.

摘要

通过多糖不对称螺旋所包围的碘反应中多碘发色团的状态,并采用圆二色性方法记录,来判断盐对支链α-葡聚糖(肌肉糖原)线性(外部)链螺旋形成的影响。结果表明,除了碘-糖原复合物吸收的已知变化外,盐通过影响多糖线性链的螺旋形成来诱导椭圆率的变化。这些影响的性质取决于所用盐的类型和浓度。单价金属盐对螺旋形成的影响比二价金属盐更有利。在二价金属盐中,过渡金属盐的影响较弱。中性盐对螺旋形成的作用具有双重性质:螺旋形成和螺旋破坏。高浓度的LiCl(大于6M)或CaCl2(大于2M)会极大地损害螺旋形成。结果表明,在中性盐对螺旋形成的作用机制中,静电效应和离液序列效应都起到了一定作用。当盐的浓度高于单摩尔浓度时,离液序列效应决定了盐对螺旋形成的影响,此时盐的特定效应尤为明显。增强H2O结构有序性的盐对线性多糖链的螺旋形成有有利影响,从而对碘反应也有有利影响。就它们对碘反应的摩尔作用效率而言,这些盐符合霍夫迈斯特离液序列。

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