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Activation of Clostridium perfringens spores under conditions that disrupt hydrophobic interactions of biological macromolecules.

机译:在破坏生物大分子疏水相互作用的条件下产气荚膜梭菌孢子的活化。

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摘要

The effect of hydrophobic interactions on the activation of C. perfringens NCTC 8679 spores was examined by heating spores under conditions that modify the hydrophobic properties of biological macromolecules. After the activation treatment and a washing procedure, germination was determined by measuring the decrease in optical density of spores suspended in an enriched germination medium. Activation was inhibited for spores that were treated under conditions that strengthen hydrophobic interactions, i.e., a decrease in pH or the presence of structure-stabilizing neutral salts. Activation was enhanced by treatment under conditions that disrupt hydrophobic interactions, i.e., an increase in pH or the presence of urea, dibucaine, or denaturing neutral salts. A deactivation treatment with the antichaotropic salt (NH4)2SO4 reversed activation by the chaotropic salt CaCl2 and to a lesser extent reversed activation by sublethal heat (75 degrees C) or urea. Most treatments that enhanced activation increased spore injury at higher temperatures, which resulted in decreased germination. However, (NH4)2SO4 and a decrease in pH from 5.6 to 3.8, which inhibited activation, also favored injury. The results suggest that activation involves a conformational change of a spore protein(s) through weakening of hydrophobic molecular forces and that activation and injury occur at different spore sites.
机译:疏水相互作用对产气荚膜梭菌NCTC 8679孢子活化的影响通过在改变生物大分子疏水特性的条件下加热孢子来检查。在活化处理和洗涤程序之后,通过测量悬浮在富集的发芽培养基中的孢子的光密度的降低来确定发芽。在增强疏水性相互作用的条件下处理的孢子的活化被抑制,即pH降低或存在结构稳定的中性盐。通过在破坏疏水相互作用的条件下进行处理来增强活化,所述条件是破坏pH相互作用或增加pH或存在尿素,二丁卡因或使中性盐变性。用离液盐(NH4)2SO4进行的失活处理使离液盐CaCl2的活化反向,并且在较小程度上使由致死热(75摄氏度)或尿素引起的活化反向。大多数增强活化的处理在较高温度下会增加孢子损伤,从而导致发芽减少。但是,(NH4)2SO4和pH值从5.6降低到3.8(抑制了活化)也有利于伤害。结果表明活化涉及通过减弱疏水分子力而使孢子蛋白的构象变化,并且活化和损伤发生在不同的孢子部位。

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