首页> 外文期刊>Journal of Molecular Biology >X-ray Structures of the Maltose-Maltodextrin-binding Protein of the Thermoacidophilic Bacterium Alicyclobacillus acidocaldarius Provide Insight into Acid Stability of Proteins.
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X-ray Structures of the Maltose-Maltodextrin-binding Protein of the Thermoacidophilic Bacterium Alicyclobacillus acidocaldarius Provide Insight into Acid Stability of Proteins.

机译:嗜热嗜酸细菌Alicyclobacillus acidocaldarius的麦芽糖-麦芽糖糊精结合蛋白的X射线结构提供了对蛋白质酸稳定性的洞察力。

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Maltose-binding proteins act as primary receptors in bacterial transport and chemotaxis systems. We report here crystal structures of the thermoacidostable maltose-binding protein from Alicyclobacillus acidocaldarius, and explore its modes of binding to maltose and maltotriose. Further, comparison with the structures of related proteins from Escherichia coli (a mesophile), and two hyperthermophiles (Pyrococcus furiosus and Thermococcus litoralis) allows an investigation of the basis of thermo- and acidostability in this family of proteins.The thermoacidophilic protein has fewer charged residues than the other three structures, which is compensated by an increase in the number of polar residues. Although the content of acidic and basic residues is approximately equal, more basic residues are exposed on its surface whereas most acidic residues are buried in the interior. As a consequence, this protein has a highly positive surface charge. Fewer salt bridges are buried than in the other MBP structures, but the number exposed on its surface does not appear to be unusual. These features appear to be correlated with the acidostability of the A.acidocaldarius protein rather than its thermostability.An analysis of cavities within the proteins shows that the extremophile proteins are more closely packed than the mesophilic one. Proline content is slightly higher in the hyperthermophiles and thermoacidophiles than in mesophiles, and this amino acid is more common at the second position of beta-turns, properties that are also probably related to thermostability. Secondary structural content does not vary greatly in the different structures, and so is not a contributing factor.
机译:麦芽糖结合蛋白在细菌转运和趋化性系统中充当主要受体。我们在这里报告了来自酸热脂环酸芽孢杆菌的热酸化麦芽糖结合蛋白的晶体结构,并探讨了其与麦芽糖和麦芽三糖结合的模式。此外,通过与大肠杆菌(嗜温菌)和两种超嗜热菌(激烈热球菌和立花热球菌)的相关蛋白质的结构进行比较,可以研究该蛋白质家族的热稳定性和耐酸碱性。残基比其他三个结构少,这可以通过增加极性残基的数量来补偿。尽管酸性和碱性残基的含量大致相等,但是更多的碱性残基暴露在其表面上,而大多数酸性残基则埋在内部。结果,该蛋白质具有高度正的表面电荷。与其他MBP结构相比,埋入的盐桥更少,但是在其表面暴露的盐桥似乎并不罕见。这些特征似乎与嗜酸曲霉蛋白的耐酸能力有关,而不是其热稳定性有关。对这些蛋白内腔的分析表明,极端嗜热蛋白比嗜温蛋白更紧密地堆积。在超嗜热菌和嗜热嗜酸菌中,脯氨酸含量比中嗜嗜酸菌中的脯氨酸含量稍高,并且该氨基酸在β-转弯的第二个位置更为常见,这种性质也可能与热稳定性有关。二级结构含量在不同结构中变化不大,因此不是影响因素。

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