天然のキチン結合タンパク質を人工進化させ、プラスチック表面認識タンパク質を開発 -駿河湾で採取したマイクロプラスチックの蛍光染色に成功-

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2026-08-21 静岡大学

静岡大学と東海大学の研究チームは、天然のキチン結合タンパク質「PfChBD2」を人工進化させ、プラスチック表面を認識するタンパク質の開発に成功した。ファージディスプレイ法で変異体を選抜し、PETへの結合性を維持しながらキチンやセルロースへの結合を大幅に低減した「VFF」を取得。VFFはPETだけでなく複数の合成高分子にも結合し、赤色蛍光タンパク質との融合体を用いることで、駿河湾から採取したポリエチレン、ポリスチレン、ポリプロピレンのマイクロプラスチックを蛍光染色できた。本成果は、天然生体高分子を認識するタンパク質の結合特性を人工高分子の認識へ転換できることを示す。将来は、材質選択性や微小粒子への検出感度を高め、環境中のマイクロプラスチックの簡便な検出・材質推定への応用が期待される。

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天然の生体高分子結合タンパク質をプラスチック表面認識タンパク質に変換する Turning a Natural Biopolymer-Binding Protein into a Plastic Surface-Recognizing Protein

Yoshihito Hashino ;Mamiko Hirose;Akihiko Nakamura

ACS Synthetic Biology  Published:August 17, 2026

DOI:https://doi.org/10.1021/acssynbio.6c00479

Abstract

Type A carbohydrate-binding modules (CBMs) preferentially recognize crystalline polysaccharides such as cellulose and chitin, yet some can also bind synthetic plastics, suggesting that their recognition properties can be redesigned through protein engineering. Here, we used directed evolution to alter the substrate specificity of the archaeal chitin-binding protein PfChBD2 toward plastics. Two rounds of evolution, targeting surface residues and conserved aromatic residues, were screened by phage display, yielding mutants with markedly reduced chitin affinity and distinct PET-binding profiles characterized by apparent binding parameters. Structural modeling indicated that substitutions altering surface electrostatics and hydrophobicity contributed to the shift in substrate preference. When fused to a fluorescent tag, the engineered proteins bound several plastics, including PET, PS, PE, and PP, while showing minimal interaction with natural polysaccharides. The proteins also stained microplastics collected from seawater, demonstrating their potential for environmental detection. This study further demonstrates CBMs as evolutionarily adaptable scaffolds capable of recognizing synthetic polymers and highlights the potential of engineered CBM-based probes for microplastic detection, polymer analysis, and biotechnological and environmental applications.

生物工学一般
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