De novo design of protein-protein interactions through modification of inter-molecular helix-helix interface residues

被引:3
|
作者
Yagi, Sota [1 ]
Akanuma, Satoshi [2 ]
Yamagishi, Manami [1 ]
Uchida, Tatsuya [3 ]
Yamagishi, Aldhiko [1 ]
机构
[1] Tokyo Univ Pharm & Life Sci, Dept Appl Sci, 1432-1 Horinouchi, Hachioji, Tokyo 1920392, Japan
[2] Waseda Univ, Fac Human Sci, 2-579-15 Mikajima, Tokorozawa, Saitama 3591192, Japan
[3] Tokyo Univ Pharm & Life Sci, Dept Mol Life Sci, 1432-1 Horinouchi, Hachioji, Tokyo 1920392, Japan
来源
关键词
Protein-protein interaction; Coiled coil; Hydrophobic interaction; Ion pairing; Solubility; COMPUTATIONAL DESIGN; 4-HELIX BUNDLE; AMINO-ACIDS; COILED-COIL; SOLUBILITY; STABILITY; DOMAIN; NANOMATERIALS; EVOLUTION; PEPTIDES;
D O I
10.1016/j.bbapap.2016.02.008
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
For de novo design of protein-protein interactions (PPIs), information on the shape and chemical complementarity of their interfaces is generally required. Recent advances in computational PPI design have allowed for de novo design of protein complexes, and several successful examples have been reported. In addition, a simple and easy to-use approach has also been reported that arranges leucines on a solvent-accessible region of an alpha-helix and places charged residues around the leucine patch to induce interactions between the two helical peptides. For this study, we adopted this approach to de novo design a new PPI between the helical bundle proteins sulerythrin and LARFH. A non-polar patch was created on an a-helix of LARFH around which arginine residues were introduced to retain its solubility. The strongest interaction found was for the LARFH variant cysIARFH-IV-3L3R and the sulerythrin mutant 6L6D (K-D = 0.16 mu M). This artificial protein complex is maintained by hydrophobic and ionic interactions formed by the inter-molecular helical bundle structure. Therefore, by the simple and easy to-use approach to create de novo interfaces on the alpha-helices, we successfully generated an artificial PPI. We also created a second LARFH variant with the non-polar patch surrounded by positively charged residues at each end. Upon mixing this LARFH variant with 6L6D, mesh-like fibrous nanostructures were observed by atomic force microscopy. Our method may, therefore, also be applicable to the de novo design of protein nanostructures. (c) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:479 / 487
页数:9
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