Thermodynamics of antibody-antigen interaction revealed by mutation analysis of antibody variable regions
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説明
Antibodies (immunoglobulins) bind specific molecules (i.e. antigens) with high affinity and specificity. In order to understand their mechanisms of recognition, interaction analysis based on thermodynamic and kinetic parameters, as well as structure determination is crucial. In this review, we focus on mutational analysis which gives information about the role of each amino acid residue in antibody-antigen interaction. Taking anti-hen egg lysozyme antibodies and several anti-small molecule antibodies, the energetic contribution of hot-spot and non-hot-spot residues is discussed in terms of thermodynamics. Here, thermodynamics of the contribution from aromatic, charged and hydrogen bond-forming amino acids are discussed, and their different characteristics have been elucidated. The information gives fundamental understanding of the antibody-antigen interaction. Furthermore, the consequences of antibody engineering are analysed from thermodynamic viewpoints: humanization to reduce immunogenicity and rational design to improve affinity. Amino acid residues outside hot-spots in the interface play important roles in these cases, and thus thermodynamic and kinetic parameters give much information about the antigen recognition. Thermodynamic analysis of mutant antibodies thus should lead to advanced strategies to design and select antibodies with high affinity.
収録刊行物
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- The journal of biochemistry
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The journal of biochemistry 158 (1), 1-13, 2015-07
Tokyo : Japanese Biochemical Society
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詳細情報 詳細情報について
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- CRID
- 1522543655642867840
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- NII論文ID
- 40020522493
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- NII書誌ID
- AA00694073
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- ISSN
- 0021924X
- 17562651
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- NDL書誌ID
- 026585208
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- PubMed
- 25956164
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- 本文言語コード
- en
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- 資料種別
- journal article
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- NDL 雑誌分類
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- ZR2(科学技術--生物学--生化学)
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- データソース種別
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- NDLサーチ
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