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解析细菌免疫蛋白 7 的折叠和稳定性中的关键残基。

Dissecting key residues in folding and stability of the bacterial immunity protein 7.

机构信息

Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds LS2 9JT, UK.

出版信息

Protein Eng Des Sel. 2011 Jun;24(6):517-23. doi: 10.1093/protein/gzr009. Epub 2011 Mar 10.

Abstract

The small four-helix immunity protein, Im7, has previously been shown to fold via a compact intermediate containing three of the four native helices. The short, six-residue helix III only docks onto the developing Im7 structure after the rate-limiting second transition state has been traversed. Previous work demonstrated that mutation of the helix III sequence can be used to trap the protein in the on-pathway intermediate ensemble at equilibrium. Here the role played by individual residues in the native helix III sequence in locking Im7 into a stable native structure is further examined. This work commenced with an Im7 sequence trapped in the partially folded state by substitution of the six residues in helix III with a polyglycine sequence. Biophysical analysis of variants in which individual residues from the native helix III sequence, and combinations of these residues, were introduced into this background demonstrated a critical requirement for three residues, Leu 53, Ile 54 and Tyr 55, to lock Im7 into its unique native structure. The results demonstrate a stringent constraint on the evolution of the Im7 helix III sequence rationalizing its high-sequence identity in the fold family. Thus, Leu 53 and Ile 54 provide crucial stabilizing interactions in the hydrophobic core of native Im7, while Tyr 55 is required for both stability and function. In contrast, Tyr 56 is critical for colicin binding and has no role in maintaining a stable native fold.

摘要

小的四螺旋免疫蛋白 Im7 以前被证明通过包含四个天然螺旋中的三个的紧凑中间产物折叠。短的、六个残基的螺旋 III 仅在穿过限速的第二个过渡态后才停靠在正在形成的 Im7 结构上。以前的工作表明,突变螺旋 III 序列可用于在平衡时将蛋白质捕获在途径中的中间物中。在这里,进一步研究了天然螺旋 III 序列中的单个残基在将 Im7 锁定到稳定天然结构中的作用。这项工作首先通过用多聚甘氨酸序列取代螺旋 III 中的六个残基,将 Im7 序列捕获在部分折叠状态。对在该背景下引入天然螺旋 III 序列中的单个残基和这些残基的组合的变体进行的生物物理分析表明,三个残基 Leu53、Ile54 和 Tyr55 将 Im7 锁定到其独特的天然结构中是必需的。结果表明,Im7 螺旋 III 序列的进化受到严格限制,从而使其在折叠家族中的高序列同一性合理化。因此,Leu53 和 Ile54 在天然 Im7 的疏水性核心中提供关键的稳定相互作用,而 Tyr55 对于稳定性和功能都是必需的。相比之下,Tyr56 对于大肠菌素结合至关重要,并且在维持稳定的天然折叠中没有作用。

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