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Glutaraldehyde treatment of proteinaceous gas vesicles from cyanobacteriumAnabaena flos-aquae

机译:戊二醛处理蓝藻厌氧性蛋白质气体囊泡

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摘要

As potential gas microcarriers, gas vesicles (GVs) were isolated from cultures of the filamentous cyanobacterium Anabaena flos-aquae and treated with glutaraldehyde. The effects of glutaraldehyde treatment on the stability of GVs, against elevated temperatures (40-121 degreesC) and protein-stripping agents such as urea and sodium dodecyl sulfate (SDS), were then examined with the pressure collapse curves generated using pressure nephelometry. The treatment was very beneficial to GVs against the exposure to SDS and urea; however, it did not make the evolution-optimized vesicle structure stronger or more temperature-resistant. In the presence of these protein-stripping agents, the treated vesicles had higher median (50%) collapse pressures (by greater than or equal to1 atm) than the untreated ones, at both room temperature and 40 degreesC. This increase has been presumably attributed to the cross-linking of the large GvpC protein to the ribbed GvpA shell, thereby resisting the stripping of GvpC that provides the primary mechanical strength to the vesicle wall. The glutaraldehyde treatment also restored the strength of GVs weakened by a 5-week storage in a refrigerator and, therefore, is expected to improve the stability of GVs for long-term storage. GVs could not be autoclaved. If necessary for the intended applications, glutaraldehyde treatment may also serve to chemically sterilize the vesicles, with the glutaraldehyde subsequently removed by dialysis.
机译:作为潜在的气体微载体,从丝状蓝细菌鱼腥藻的培养物中分离了气体囊泡(GV),并用戊二醛处理。然后用压力比浊法产生的压力塌陷曲线检查了戊二醛处理对GVs抵抗高温(40-121°C)和蛋白剥离剂(如尿素和十二烷基硫酸钠(SDS))稳定性的影响。该处理对GV抵抗SDS和尿素的暴露非常有益;然而,它没有使进化优化的囊泡结构更坚固或更耐高温。在室温和40摄氏度下,存在这些蛋白质剥离剂的情况下,处理后的囊泡比未处理的囊泡具有更高的中值(50%)塌陷压力(大于或等于1个大气压)。据推测,这种增加归因于大的GvpC蛋白与带肋的GvpA壳的交联,从而抵抗了GvpC的剥离,该剥离为囊泡壁提供了主要的机械强度。戊二醛处理还恢复了由于在冰箱中保存5周而减弱的GV的强度,因此,有望提高GV的长期存储稳定性。无法对GV进行高压灭菌。如果对于预期的应用是必要的,戊二醛处理也可以用于化学消毒囊泡,随后通过透析除去戊二醛。

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