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2KBL

NMR Structure of a Monomeric Folding Intermediate Reveals the Structural Basis for Rapid Assembly of an Evolutionary Optimized Trimerization Module

2KBL の概要
エントリーDOI10.2210/pdb2kbl/pdb
関連するPDBエントリー1aa0 1RFO 1U0P
NMR情報BMRB: 16090
分子名称Fibritin (1 entity in total)
機能のキーワードfolding intermediate, monomer of foldon, fibritin, trimer, protein assembly, protein-protein interaction, electrostatic interaction, coiled coil, structural protein
由来する生物種Enterobacteria phage T4 (Bacteriophage T4)
タンパク質・核酸の鎖数1
化学式量合計3256.67
構造登録者
Habazettl, J.,Reiner, A.,Kiefhaber, T. (登録日: 2008-12-02, 公開日: 2009-04-28, 最終更新日: 2024-05-15)
主引用文献Habazettl, J.,Reiner, A.,Kiefhaber, T.
NMR Structure of a Monomeric Intermediate on the Evolutionarily Optimized Assembly Pathway of a Small Trimerization Domain
J.Mol.Biol., 389:103-114, 2009
Cited by
PubMed Abstract: Efficient formation of specific intermolecular interactions is essential for self-assembly of biological structures. The foldon domain is an evolutionarily optimized trimerization module required for assembly of the large, trimeric structural protein fibritin from phage T4. Monomers consisting of the 27 amino acids comprising a single foldon domain subunit spontaneously form a natively folded trimer. During assembly of the foldon domain, a monomeric intermediate is formed on the submillisecond time scale, which provides the basis for two consecutive very fast association reactions. Mutation of an intermolecular salt bridge leads to a monomeric protein that resembles the kinetic intermediate in its spectroscopic properties. NMR spectroscopy revealed essentially native topology of the monomeric intermediate with defined hydrogen bonds and side-chain interactions but largely reduced stability compared to the native trimer. This structural preorganization leads to an asymmetric charge distribution on the surface that can direct rapid subunit recognition. The low stability of the intermediate allows a large free-energy gain upon trimerization, which serves as driving force for rapid assembly. These results indicate different free-energy landscapes for folding of small oligomeric proteins compared to monomeric proteins, which typically avoid the transient population of intermediates.
PubMed: 19361528
DOI: 10.1016/j.jmb.2009.03.073
主引用文献が同じPDBエントリー
実験手法
SOLUTION NMR
構造検証レポート
Validation report summary of 2kbl
検証レポート(詳細版)ダウンロードをダウンロード

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件を2026-01-28に公開中

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