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Diverse protein assembly driven by metal and chelating amino acids with selectivity and tunability.
Yang, Minwoo; Song, Woon Ju.
Affiliation
  • Yang M; Department of Chemistry, College of Natural Sciences, Seoul National University, Seoul, 08826, Republic of Korea.
  • Song WJ; Department of Chemistry, College of Natural Sciences, Seoul National University, Seoul, 08826, Republic of Korea. woonjusong@snu.ac.kr.
Nat Commun ; 10(1): 5545, 2019 12 05.
Article de En | MEDLINE | ID: mdl-31804480
ABSTRACT
Proteins are versatile natural building blocks with highly complex and multifunctional architectures, and self-assembled protein structures have been created by the introduction of covalent, noncovalent, or metal-coordination bonding. Here, we report the robust, selective, and reversible metal coordination properties of unnatural chelating amino acids as the sufficient and dominant driving force for diverse protein self-assembly. Bipyridine-alanine is genetically incorporated into a D3 homohexamer. Depending on the position of the unnatural amino acid, 1-directional, crystalline and noncrystalline 2-directional, combinatory, and hierarchical architectures are effectively created upon the addition of metal ions. The length and shape of the structures is tunable by altering conditions related to thermodynamics and kinetics of metal-coordination and subsequent reactions. The crystalline 1-directional and 2-directional biomaterials retain their native enzymatic activities with increased thermal stability, suggesting that introducing chelating ligands provides a specific chemical basis to synthesize diverse protein-based functional materials while retaining their native structures and functions.
Sujet(s)

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Conformation des protéines / Protéines / Acides aminés / Métaux Langue: En Journal: Nat Commun Sujet du journal: BIOLOGIA / CIENCIA Année: 2019 Type de document: Article

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Conformation des protéines / Protéines / Acides aminés / Métaux Langue: En Journal: Nat Commun Sujet du journal: BIOLOGIA / CIENCIA Année: 2019 Type de document: Article