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首页> 外文期刊>Journal of Molecular Modeling >A theoretical model of Aquifex pyrophilus flagellin: implications for its thermostability
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A theoretical model of Aquifex pyrophilus flagellin: implications for its thermostability

机译:Aquifex pyrophilus鞭毛蛋白的理论模型:对其热稳定性的影响

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摘要

Aquifex pyrophilus is a flagellated hyperthermophilic eubacterial species that grows optimally at 85°C. The thermostable A. pyrophilus flagellar filament is primarily composed of a single protein called flagellin (FlaA). The N- and C-terminal sequence regions of FlaA are important for self-assembly and share high sequence similarity with mesophilic bacterial flagellins. We have developed a predictive 3D-structure of FlaA, using the published structure of mesophilic Salmonella typhimurium flagellin (FliC) as a template and analyzed it with respect to possible determinants of thermostability. A sequence comparison of FlaA and FliC revealed a +7.0% increase in FlaA hydrophobic residues, a +0.6% increase in charged residues and a corresponding decrease of −6.0% in polar residues. The FlaA N- and C-termini also have higher proportions of hydrophobic and charged residues at the expense of polar residues and higher non-polar surface areas. Thus, a predominant stabilizing factor in FlaA appears to be increased hydrophobicity, which often confers greater rigidity to proteins. Fewer intramolecular ion pairs were observed in FlaA than FliC, although an increase in the positive charge potential of the FlaA D0 and D1 domains was also observed; increased intermolecular salt bridges may also contribute to the thermal stability of the oligomeric flagellar fiber.
机译:Aquifex pyrophilus是一种鞭毛的嗜高温真细菌,在85°C时最佳生长。耐高温嗜热曲霉鞭毛丝主要由称为鞭毛蛋白(FlaA)的单一蛋白质组成。 FlaA的N和C端序列区域对于自组装很重要,并且与嗜温细菌鞭毛蛋白具有很高的序列相似性。我们使用已公布的嗜温性鼠伤寒沙门氏菌鞭毛蛋白(FliC)结构作为模板,开发了FlaA的预测3D结构,并就可能的热稳定性决定因素进行了分析。 FlaA和FliC的序列比较显示,FlaA疏水残基增加+ 7.0%,带电残基增加+ 0.6%,而极性残基则减少-6.0%。 FlaA N和C末端还具有较高比例的疏水残基和带电残基,但以极性残基和更高的非极性表面积为代价。因此,FlaA中的主要稳定因子似乎增加了疏水性,这通常赋予蛋白质更大的刚性。在FlaA中观察到的分子内离子对少于FliC,尽管还观察到了FlaA D0和D1域的正电荷电势增加。分子间盐桥的增加也可能有助于低聚鞭毛纤维的热稳定性。

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