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Sequence swapping does not result in conformation swapping for the β4/β5 and β8/β9 β-hairpin turns in human acidic fibroblast growth factor

机译:序列交换不会导致人酸性成纤维细胞生长因子中的β4/β5和β8/β9β-发夹结构转变

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摘要

The β-turn is the most common type of nonrepetitive structure in globular proteins, comprising ~25% of all residues; however, a detailed understanding of effects of specific residues upon β-turn stability and conformation is lacking. Human acidic fibroblast growth factor (FGF-1) is a member of the β-trefoil superfold and contains a total of five β-hairpin structures (antiparallel β-sheets connected by a reverse turn). β-Turns related by the characteristic threefold structural symmetry of this superfold exhibit different primary structures, and in some cases, different secondary structures. As such, they represent a useful system with which to study the role that turn sequences play in determining structure, stability, and folding of the protein. Two turns related by the threefold structural symmetry, the β4/β5 and β8/β9 turns, were subjected to both sequence-swapping and poly-glycine substitution mutations, and the effects upon stability, folding, and structure were investigated. In the wild-type protein these turns are of identical length, but exhibit different conformations. These conformations were observed to be retained during sequence-swapping and glycine substitution mutagenesis. The results indicate that the β-turn structure at these positions is not determined by the turn sequence. Structural analysis suggests that residues flanking the turn are a primary structural determinant of the conformation within the turn.
机译:β-转角是球形蛋白中最常见的非重复结构类型,占所有残基的25%;然而,缺乏对特定残基对β-转角稳定性和构象的影响的详细理解。人酸性成纤维细胞生长因子(FGF-1)是β-三叶形超折叠的成员,并且总共包含五个β-发夹结构(通过反向连接连接的反平行β-折叠层)。与该超级折叠的特征性三重结构对称性相关的β-转弯具有不同的一级结构,在某些情况下还具有不同的二级结构。因此,它们代表了一个有用的系统,可用来研究转弯序列在确定蛋白质的结构,稳定性和折叠中所起的作用。通过三重结构对称性关联的两个匝β4/β5和β8/β9进行序列交换和聚甘氨酸取代突变,并研究了其对稳定性,折叠和结构的影响。在野生型蛋白质中,这些匝长度相同,但显示不同的构象。观察到这些构象在序列交换和甘氨酸取代诱变过程中得以保留。结果表明,在这些位置的β-转弯结构不是由转弯序列决定的。结构分析表明,位于转弯侧面的残基是转弯内构象的主要结构决定因素。

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