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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >All-or-none membrane permeabilization by fengycin-type lipopeptides from Bacillus subtilis QST713.
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All-or-none membrane permeabilization by fengycin-type lipopeptides from Bacillus subtilis QST713.

机译:枯草芽孢杆菌QST713的丰霉素型脂肽对膜的全通透性。

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The fungicidal activity of Bacillus subtilis QST713 has been utilized for the highly effective and environmentally safe protection of crops against a variety of pathogens. It is based mainly on the production of cyclic lipopeptides of the fengycin (FEs), surfactin, and iturin families. The mixed population of native FEs forms micelles which solubilize individual FEs such as agrastatin 1 (AS1) that are otherwise rather insoluble on their own. Fluorescence lifetime-based calcein efflux measurements and cryo transmission electron microscopy show that these FEs show a unique scenario of membrane permeabilization. Poor miscibility of FEs with lipid probably promotes the formation of pores in 10% of the vesicles at only approximately 1muM free FE and in 15% of the vesicles at 10 muM. We explain why this limited, all-or-none leakage could nevertheless account for the killing of virtually all fungi whereas the same extent of graded vesicle leakage may be biologically irrelevant. Then, crystallization of AS1 and micellization of plipastatins cause a cut-off in leakage at 15% that might regulate the biological activity of FEs, protecting Bacillus and plant membranes. The fact that FE micelles solubilize only about 10 mol-% fluid lipid resembles the behavior of detergent resistance.
机译:枯草芽孢杆菌QST713的杀菌活性已被用于对多种病原体进行高效,环保的农作物保护。它主要基于丰霉素(FEs),表面活性素和iturin家族的环状脂肽的生产。天然FE的混合种群形成胶束,可溶解单个FE(例如阿格拉他汀1(AS1)),否则它们本身很难溶解。基于荧光寿命的钙黄绿素外流测量和低温透射电子显微镜显示,这些FE显示出膜通透性的独特情况。 FE与脂质的易混溶性可能会在仅约1μM的游离FE和10%的15%的囊泡中促进10%的囊泡中孔的形成。我们解释了为什么这种有限的,全有或全无的渗漏仍然可以解释几乎所有真菌的杀死,而同等程度的分级囊泡渗漏在生物学上可能无关紧要。然后,AS1的结晶和Plastastatin的胶束化会导致15%的渗漏截止,这可能会调节FE的生物学活性,从而保护芽孢杆菌和植物膜。 FE胶束仅溶解约10 mol%的流体脂质这一事实类似于抗洗涤剂性能。

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