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水溶液中天然和复性黄原胶的构象与柔韧性

Conformations and flexibility of native and re-natured xanthan in aqueous solutions.

作者信息

Milas M, Reed W F, Printz S

机构信息

Centre de Recherches sur les Macromolecules Végétales (CERMAV), Grenoble, France.

出版信息

Int J Biol Macromol. 1996 Apr;18(3):211-21. doi: 10.1016/0141-8130(95)01080-7.

Abstract

The conformation and flexibility of sonicated 'native' and 're-natured' xanthan have been investigated by size exclusion chromatography (SEC) with coupled multi-angle light scattering and viscosity detectors. 'Native' xanthan (NX) refers to xanthan dissolved in moderate ionic strength aqueous solution, which has not been exposed either to high temperature or very low ionic strength, and 're-natured' xanthan (RX) here refers to xanthan which has been heated above the conformational melting temperature and then recooled. The mass distributions of the NX and RX are virtually identical, implying that the RX does not involve aggregates of, or disassociated fragments of, NX. The flexibilities and conformations between NX and RX, however, are strikingly different; RX is far stiffer than NX, the persistence lengths being roughly 1000 A and 300 A, respectively, and the mass per unit length M/L of the RX is roughly double that of NX. With estimated M/L of 200 Da/A and 98 Da/A, respectively, the results strengthen the notion that RX is double stranded, whereas as NX appears single stranded. The nature and mechanism of formation of the double-stranded form is still unclear, and a few speculative scenarios are suggested. Finally, preliminary results on the kinetics of xanthan self-association in HCI are presented which illustrate the complexity of such processes in xanthan.

摘要

通过尺寸排阻色谱(SEC)结合多角度光散射和粘度检测器,研究了超声处理的“天然”和“复性”黄原胶的构象和柔韧性。“天然”黄原胶(NX)是指溶解在中等离子强度水溶液中的黄原胶,其未暴露于高温或极低离子强度下,这里的“复性”黄原胶(RX)是指已加热至构象熔化温度以上然后再冷却的黄原胶。NX和RX的质量分布几乎相同,这意味着RX不涉及NX的聚集体或解离片段。然而,NX和RX之间的柔韧性和构象却显著不同;RX比NX硬得多,其持久长度分别约为1000 Å和300 Å,且RX的单位长度质量M/L约为NX的两倍。分别估计M/L为200 Da/Å和98 Da/Å,这些结果强化了RX是双链而NX似乎是单链的观点。双链形式的形成性质和机制仍不清楚,并提出了一些推测性情景。最后,给出了黄原胶在HCl中自缔合动力学的初步结果,这些结果说明了黄原胶中此类过程的复杂性。

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