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Calcium dependent formation of tubular assemblies by recombinant S-layer proteins in vivo and in vitro

机译:钙离子依赖的重组S层蛋白在体内和体外形成的管状组装体

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Surface layer proteins have the appealing property to self-assemble in nanosized arrays in solution and on solid substrates. In this work, we characterize the formation of assembly structures of the recombinant surface layer protein SbsC of Geobacillus stearothermophilus ATTC 12980, which was tagged with enhanced green fluorescent protein and expressed in the yeast Saccharomyces cerevisiae. The tubular structures formed by the protein in vivo are retained upon bursting the cells by osmotic shock; however, their average length is decreased. During dialysis, monomers obtained by treatment with chaotropic chemicals recrystallize again to form tube-like structures. This process is strictly dependent on calcium (Ca~(2+)) ions, with an optimal concentration of 10 mM. Further increase of the Ca~(2+) concentration results in multiple non-productive nucleation points. We further show that the lengths of the S-layer assemblies increase with time and can be controlled by pH. After 48 h, the average length at pH 9.0 is 4.13 μm compared to 2.69 μm at pH 5.5. Successful chemical deposition of platinum indicates the potential of recrystallized mSbsC-eGFP structures for nanobiotechnological applications.
机译:表面层蛋白具有在溶液中和在固体基质上以纳米尺寸阵列自组装的吸引人的特性。在这项工作中,我们表征了嗜热地热芽孢杆菌ATTC 12980的重组表面层蛋白SbsC的组装结构的形成,该结构用增强的绿色荧光蛋白标记并在酿酒酵母中表达。蛋白质在体内形成的管状结构在通过渗透休克使细胞破裂后得以保留。但是,它们的平均长度减小了。在透析期间,通过用离液剂处理而获得的单体再次重结晶以形成管状结构。此过程严格取决于钙(Ca〜(2+))离子,最佳浓度为10 mM。 Ca〜(2+)浓度的进一步增加导致多个非生产性成核点。我们进一步表明,S层组件的长度随时间增加,并且可以通过pH值控制。 48小时后,pH 9.0的平均长度为4.13μm,而pH 5.5的平均长度为2.69μm。铂的成功化学沉积表明了纳米生物技术应用中重结晶的mSbsC-eGFP结构的潜力。

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