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通过结构基序工程探索蛋白质稳定性的局部和非局部相互作用。

Exploring local and non-local interactions for protein stability by structural motif engineering.

作者信息

Niggemann M, Steipe B

机构信息

Genzentrum der Ludwig-Maximilians-Universität, Feodor-Lynen Strasse 25, München, 81377, Germany.

出版信息

J Mol Biol. 2000 Feb 11;296(1):181-95. doi: 10.1006/jmbi.1999.3385.

Abstract

In order to probe the relative contribution of local and non-local interactions to the thermodynamic stability of proteins, we have devised an experimental approach based on a combination of motif engineering and sequence shuffling. Candidate chain segments in an immunoglobulin V(L) domain were identified whose conformation is proposed to be dominated by non-local interactions. Locally interacting structural motifs of a different conformation were then constructed as replacements, by introducing motif consensus sequences. We find that all nine replacements we constructed systematically reduce the folding cooperativity. By comparing this destabilising effect with the folding transitions of shuffled sequences for three of these motifs, we estimate the contribution of local, native interactions to the free energy of folding. Our results suggest that local and non-local interactions contribute to stability by an approximately equal amount, but that local interactions stabilise by increasing the resistance to denaturation while non-local interactions increase folding cooperativity. The systematic loss of stability by sequence shuffling in these host-guest experiments suggests that the designed interactions indeed are present in the native state, thus consensus sequence engineering may be a useful tool in structure design, but non-local interactions must be taken into account for global stability engineering. Statistical approaches are powerful tools for engineering protein structure and stability, but an analysis based on local sequence propensities alone does not adequately represent the balance of sequence and context in protein structures.

摘要

为了探究局部和非局部相互作用对蛋白质热力学稳定性的相对贡献,我们设计了一种基于基序工程和序列改组相结合的实验方法。在免疫球蛋白V(L)结构域中鉴定出候选链段,其构象被认为主要由非局部相互作用主导。然后通过引入基序共有序列,构建不同构象的局部相互作用结构基序作为替代物。我们发现,我们系统构建的所有九个替代物都系统性地降低了折叠协同性。通过将这种去稳定化效应与其中三个基序的改组序列的折叠转变进行比较,我们估计了局部天然相互作用对折叠自由能的贡献。我们的结果表明,局部和非局部相互作用对稳定性的贡献大致相等,但局部相互作用通过增加对变性的抗性来稳定结构,而非局部相互作用则增加折叠协同性。在这些主客体实验中,通过序列改组导致的稳定性系统性丧失表明,设计的相互作用确实存在于天然状态,因此共有序列工程可能是结构设计中的一种有用工具,但在整体稳定性工程中必须考虑非局部相互作用。统计方法是工程化蛋白质结构和稳定性的强大工具,但仅基于局部序列倾向的分析并不能充分体现蛋白质结构中序列和上下文的平衡。

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