【2h】

From the Cover: Reverse engineering the (β/α)8 barrel fold

机译:从封面开始:对(β/α)8进行反向工程 桶折

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摘要

The (β/α)8 barrel is the most commonly occurring fold among protein catalysts. To lay a groundwork for engineering novel barrel proteins, we investigated the amino acid sequence restrictions at 182 structural positions of the prototypical (β/α)8 barrel enzyme triosephosphate isomerase. Using combinatorial mutagenesis and functional selection, we find that turn sequences, α-helix capping and stop motifs, and residues that pack the interface between β-strands and α-helices are highly mutable. Conversely, any mutation of residues in the central core of the β-barrel, β-strand stop motifs, and a single buried salt bridge between amino acids R189 and D227 substantially reduces catalytic activity. Four positions are effectively immutable: conservative single substitutions at these four positions prevent the mutant protein from complementing a triosephosphate isomerase knockout in Escherichia coli. At 142 of the 182 positions, mutation to at least one amino acid of a seven-letter amino acid alphabet produces a triosephosphate isomerase with wild-type activity. Consequently, it seems likely that (β/α)8 barrel structures can be encoded with a subset of the 20 amino acids. Such simplification would greatly decrease the computational burden of (β/α)8 barrel design.
机译:(β/α)8桶是蛋白质催化剂中最常见的折叠。为工程化新型桶蛋白奠定基础,我们研究了原型(β/α)8桶酶磷酸三糖异构酶在182个结构位点的氨基酸序列限制。使用组合诱变和功能选择,我们发现,轮换序列,α-螺旋加帽和终止基序以及填充β-链和α-螺旋之间的界面的残基高度易变。相反,β-桶中央核心中的残基,β-链终止基序以及氨基酸R189和D227之间的单个掩埋盐桥之间的任何突变都会大大降低催化活性。四个位置实际上是不可变的:在这四个位置上的保守单取代可防止突变蛋白补充大肠杆菌中的磷酸三糖异构酶敲除。在182个位置中的142个位置,突变为七个字母的氨基酸字母中的至少一个氨基酸会产生具有野生型活性的磷酸三糖异构酶。 因此,似乎(β/α)8 桶结构可以用20个氨基酸的一个子集编码。 这样的简化将大大减轻计算量 (β/α)8枪管设计。

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