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Isolation of two physiologically induced variant strains of Bacillus stearothermophilus NRS 2004/3a and characterization of their S-layer lattices.

机译:两种嗜热脂肪芽孢杆菌NRS 2004 / 3a的生理诱导变异株的分离及其S层晶格的表征。

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摘要

During growth of Bacillus stearothermophilus NRS 2004/3a in continuous culture on complex medium, the chemical properties of the S-layer glycoprotein and the characteristic oblique lattice were maintained only if glucose was used as the sole carbon source. With increased aeration, amino acids were also metabolized, accompanied by liberation of ammonium and by changes in the S-layer protein. Depending on the stage of fermentation at which oxygen limitation was relieved, two different variants, one with a more delicate oblique S-layer lattice (variant 3a/V1) and one with a square S-layer lattice (variant 3a/V2), were isolated. During the switch from the wild-type strain to a variant or from variant 3a/V2 to variant 3a/V1, monolayers of two types of S-layer lattices could be demonstrated on the surfaces of single cells. S-layer proteins from variants had different molecular sizes and a significantly lower carbohydrate content than S-layer proteins from the wild-type strain did. Although the S-layer lattices from the wild-type and variant strains showed quite different protein mass distributions in two- and three-dimensional reconstructions, neither the amino acid composition nor the pore size, as determined by permeability studies, was significantly changed. Peptide mapping and N-terminal sequencing results strongly indicated that the three S-layer proteins are encoded by different genes and are not derived from a universal precursor form.
机译:在复杂培养基上连续培养的嗜热脂肪芽孢杆菌NRS 2004 / 3a的生长过程中,只有将葡萄糖用作唯一的碳源,才能保持S层糖蛋白的化学性质和特征性斜格。随着通气量的增加,氨基酸也被代谢,伴随着铵的释放和S层蛋白的变化。根据缓解氧气限制的发酵阶段,有两种不同的变体,一种具有更精细的倾斜S层晶格(变体3a / V1),另一种具有方形S层晶格(变体3a / V2)。隔离的。在从野生型菌株到变体或从变体3a / V2到变体3a / V1的转换过程中,可以在单个细胞的表面上展示两种类型的S层晶格的单层。与来自野生型菌株的S层蛋白相比,来自变体的S层蛋白具有不同的分子大小,并且碳水化合物含量明显更低。尽管野生型和变异型菌株的S层晶格在二维和三维重构中显示出完全不同的蛋白质质量分布,但通过通透性研究确定的氨基酸组成和孔径均未发生显着变化。肽图分析和N端测序结果强烈表明,这三个S层蛋白由不同的基因编码,并非源自通用的前体形式。

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