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通过紧邻的多个结合位点,瞬时发生 SH3 肽复合物的蛋白-蛋白相互作用。

Transient protein-protein interaction of the SH3-peptide complex via closely located multiple binding sites.

机构信息

Department of Bio and Brain Engineering, Korea Advanced Institute of Technology-KAIST, Daejeon, South Korea.

出版信息

PLoS One. 2012;7(3):e32804. doi: 10.1371/journal.pone.0032804. Epub 2012 Mar 22.

Abstract

Protein-protein interactions play an essential role in cellular processes. Certain proteins form stable complexes with their partner proteins, whereas others function by forming transient complexes. The conventional protein-protein interaction model describes an interaction between two proteins under the assumption that a protein binds to its partner protein through a single binding site. In this study, we improved the conventional interaction model by developing a Multiple-Site (MS) model in which a protein binds to its partner protein through closely located multiple binding sites on a surface of the partner protein by transiently docking at each binding site with individual binding free energies. To test this model, we used the protein-protein interaction mediated by Src homology 3 (SH3) domains. SH3 domains recognize their partners via a weak, transient interaction and are therefore promiscuous in nature. Because the MS model requires large amounts of data compared with the conventional interaction model, we used experimental data from the positionally addressable syntheses of peptides on cellulose membranes (SPOT-synthesis) technique. From the analysis of the experimental data, individual binding free energies for each binding site of peptides were extracted. A comparison of the individual binding free energies from the analysis with those from atomistic force fields gave a correlation coefficient of 0.66. Furthermore, application of the MS model to 10 SH3 domains lowers the prediction error by up to 9% compared with the conventional interaction model. This improvement in prediction originates from a more realistic description of complex formation than the conventional interaction model. The results suggested that, in many cases, SH3 domains increased the protein complex population through multiple binding sites of their partner proteins. Our study indicates that the consideration of general complex formation is important for the accurate description of protein complex formation, and especially for those of weak or transient protein complexes.

摘要

蛋白质-蛋白质相互作用在细胞过程中起着至关重要的作用。某些蛋白质与它们的伴侣蛋白形成稳定的复合物,而另一些则通过形成短暂的复合物发挥作用。传统的蛋白质-蛋白质相互作用模型描述了两个蛋白质之间的相互作用,假设一个蛋白质通过单个结合位点与它的伴侣蛋白结合。在这项研究中,我们通过开发一种多结合位点(MS)模型改进了传统的相互作用模型,其中一个蛋白质通过在伴侣蛋白表面上的多个紧密相邻的结合位点暂时停靠在每个结合位点上,通过单个结合自由能与伴侣蛋白结合。为了测试这个模型,我们使用了Src 同源 3(SH3)结构域介导的蛋白质-蛋白质相互作用。SH3 结构域通过弱的、短暂的相互作用识别它们的伴侣,因此在本质上是混杂的。由于 MS 模型与传统的相互作用模型相比需要大量的数据,我们使用了来自纤维素膜上的肽的位置可寻址合成(SPOT 合成)技术的实验数据。从对实验数据的分析中,提取了每个肽的结合自由能。从分析中获得的各个结合自由能与原子力场的自由能进行比较,得到了 0.66 的相关系数。此外,将 MS 模型应用于 10 个 SH3 结构域,与传统的相互作用模型相比,预测错误降低了 9%。这种预测精度的提高源于比传统相互作用模型更真实的复合物形成描述。结果表明,在许多情况下,SH3 结构域通过其伴侣蛋白的多个结合位点增加了蛋白质复合物的丰度。我们的研究表明,考虑一般的复合物形成对于准确描述蛋白质复合物形成是重要的,特别是对于那些弱的或短暂的蛋白质复合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62f2/3310816/6c9308a173c9/pone.0032804.g001.jpg

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