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Sequence and structural analysis of the Asp-box motif and Asp-box beta-propellers; a widespread propeller-type characteristic of the Vps10 domain family and several glycoside hydrolase families

机译:Asp-box基序和Asp-boxβ-螺旋桨的序列和结构分析; Vps10结构域家族和几个糖苷水解酶家族的广泛的螺旋桨型特征

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Background The Asp-box is a short sequence and structure motif that folds as a well-defined β-hairpin. It is present in different folds, but occurs most prominently as repeats in β-propellers. Asp-box β-propellers are known to be characteristically irregular and to occur in many medically important proteins, most of which are glycosidase enzymes, but they are otherwise not well characterized and are only rarely treated as a distinct β-propeller family. We have analyzed the sequence, structure, function and occurrence of the Asp-box and s-Asp-box -a related shorter variant, and provide a comprehensive classification and computational analysis of the Asp-box β-propeller family. Results We find that all conserved residues of the Asp-box support its structure, whereas the residues in variable positions are generally used for other purposes. The Asp-box clearly has a structural role in β-propellers and is highly unlikely to be involved in ligand binding. Sequence analysis of the Asp-box β-propeller family reveals it to be very widespread especially in bacteria and suggests a wide functional range. Disregarding the Asp-boxes, sequence conservation of the propeller blades is very low, but a distinct pattern of residues with specific properties have been identified. Interestingly, Asp-boxes are occasionally found very close to other propeller-associated repeats in extensive mixed-motif stretches, which strongly suggests the existence of a novel class of hybrid β-propellers. Structural analysis reveals that the top and bottom faces of Asp-box β-propellers have striking and consistently different loop properties; the bottom is structurally conserved whereas the top shows great structural variation. Interestingly, only the top face is used for functional purposes in known structures. A structural analysis of the 10-bladed β-propeller fold, which has so far only been observed in the Asp-box family, reveals that the inner strands of the blades are unusually far apart, which explains the surprisingly large diameter of the central tunnel of sortilin. Conclusion We have provided new insight into the structure and function of the Asp-box motif and of Asp-box β-propellers, and expect that the classification and analysis presented here will prove helpful in interpreting future data on Asp-box proteins in general and on Asp-box β-propellers in particular.
机译:背景技术Asp-box是一个短序列和结构基序,可折叠成定义​​明确的β-发夹。它以不同的折叠形式存在,但最显着地以β-螺旋桨中的重复出现。众所周知,Asp-boxβ螺旋桨的特征是不规则的,并存在于许多医学上重要的蛋白质中,其中大多数是糖苷酶,但它们的特征不明确,很少被视作独特的β螺旋桨家族。我们分析了Asp-box和s-Asp-box-相关的较短变体的序列,结构,功能和发生情况,并提供了Asp-boxβ-螺旋桨家族的全面分类和计算分析。结果我们发现,Asp-box的所有保守残基都支持其结构,而可变位置的残基通常用于其他目的。 Asp-box显然在β-螺旋桨中具有结构性作用,极不可能参与配体结合。对Asp-boxβ螺旋桨家族的序列分析表明,它非常普遍,特别是在细菌中,并且功能范围很广。不管Asp盒如何,螺旋桨叶片的序列保守性都非常低,但是已经鉴定出具有特定性质的残渣的独特模式。有趣的是,在广泛的混合基序拉伸中,有时会发现Asp盒与其他螺旋桨相关的重复序列非常接近,这强烈表明存在一类新型的混合β螺旋桨。结构分析表明,Asp-boxβ螺旋桨的顶面和底面具有明显且始终不同的回路特性。底部在结构上是保守的,而顶部则显示出很大的结构变化。有趣的是,在已知结构中仅顶面用于功能目的。迄今为止仅在Asp-box系列中才观察到的10叶片β螺旋桨折叠的结构分析表明,叶片的内层股相距遥远,这说明了中央通道的直径惊人地大排序。结论我们提供了有关Asp-box母题和Asp-boxβ-螺旋桨的结构和功能的新见解,并希望此处介绍的分类和分析将有助于解释一般和未来Asp-box蛋白的数据。特别是在Asp-boxβ螺旋桨上。

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