Loading
PDBj
メニューPDBj@FacebookPDBj@X(formerly Twitter)PDBj@BlueSkyPDBj@YouTubewwPDB FoundationwwPDBDonate
RCSB PDBPDBeBMRBAdv. SearchSearch help

8IUC

Crystal structure of GH65 alpha-1,2-glucosidase from Flavobacterium johnsoniae in complex with isomaltose

8IUC の概要
エントリーDOI10.2210/pdb8iuc/pdb
分子名称Candidate alpha glycoside phosphorylase Glycoside hydrolase family 65, alpha-D-glucopyranose-(1-6)-beta-D-glucopyranose, 1,2-ETHANEDIOL, ... (4 entities in total)
機能のキーワードglycoside hydrolase, gh65, kojibiose, (alpha/alpha)6-barrel, dextran, hydrolase
由来する生物種Flavobacterium johnsoniae UW101
タンパク質・核酸の鎖数3
化学式量合計232356.59
構造登録者
Nakamura, S.,Miyazaki, T. (登録日: 2023-03-24, 公開日: 2023-06-14, 最終更新日: 2024-05-29)
主引用文献Nakamura, S.,Kurata, R.,Tonozuka, T.,Funane, K.,Park, E.Y.,Miyazaki, T.
Bacteroidota polysaccharide utilization system for branched dextran exopolysaccharides from lactic acid bacteria.
J.Biol.Chem., 299:104885-104885, 2023
Cited by
PubMed Abstract: Dextran is an α-(1→6)-glucan that is synthesized by some lactic acid bacteria, and branched dextran with α-(1→2)-, α-(1→3)-, and α-(1→4)-linkages are often produced. Although many dextranases are known to act on the α-(1→6)-linkage of dextran, few studies have functionally analyzed the proteins involved in degrading branched dextran. The mechanism by which bacteria utilize branched dextran is unknown. Earlier, we identified dextranase (FjDex31A) and kojibiose hydrolase (FjGH65A) in the dextran utilization locus (FjDexUL) of a soil Bacteroidota Flavobacterium johnsoniae and hypothesized that FjDexUL is involved in the degradation of α-(1→2)-branched dextran. In this study, we demonstrate that FjDexUL proteins recognize and degrade α-(1→2)- and α-(1→3)-branched dextrans produced by Leuconostoc citreum S-32 (S-32 α-glucan). The FjDexUL genes were significantly upregulated when S-32 α-glucan was the carbon source compared with α-glucooligosaccharides and α-glucans, such as linear dextran and branched α-glucan from L. citreum S-64. FjDexUL glycoside hydrolases synergistically degraded S-32 α-glucan. The crystal structure of FjGH66 shows that some sugar-binding subsites can accommodate α-(1→2)- and α-(1→3)-branches. The structure of FjGH65A in complex with isomaltose supports that FjGH65A acts on α-(1→2)-glucosyl isomaltooligosaccharides. Furthermore, two cell surface sugar-binding proteins (FjDusD and FjDusE) were characterized, and FjDusD showed an affinity for isomaltooligosaccharides and FjDusE for dextran, including linear and branched dextrans. Collectively, FjDexUL proteins are suggested to be involved in the degradation of α-(1→2)- and α-(1→3)-branched dextrans. Our results will be helpful in understanding the bacterial nutrient requirements and symbiotic relationships between bacteria at the molecular level.
PubMed: 37269952
DOI: 10.1016/j.jbc.2023.104885
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (1.56 Å)
構造検証レポート
Validation report summary of 8iuc
検証レポート(詳細版)ダウンロードをダウンロード

246905

件を2025-12-31に公開中

PDB statisticsPDBj update infoContact PDBjnumon