Redox-dependent structural switching converts Escherichia coli thioredoxin 2 into a molecular chaperone

Citations

WEB OF SCIENCE

1
Citations

SCOPUS

1

초록

Thioredoxins (Trxs) are ubiquitous oxidoreductases that maintain cellular redox homeostasis through thioldisulfide exchange reactions. Escherichia coli thioredoxin 2 (EcTrx2) possesses a unique N-terminal zincbinding domain absent from the canonical thioredoxin EcTrx1, but the physiological significance of this domain has remained unclear. Here we show that EcTrx2 undergoes reversible, redox-dependent structural switching accompanied by a functional conversion under oxidative stress. Oxidative conditions promoted the formation of high-molecular-weight (HMW) oligomeric complexes, whereas reducing conditions favored lowmolecular-weight (LMW) species. Increased surface hydrophobicity of oxidized EcTrx2 correlated with a marked enhancement of holdase chaperone activity and a concomitant reduction in disulfide reductase activity. Size-exclusion chromatography coupled with transmission electron microscopy further revealed that the HMW oligomers were the predominant chaperone-active species, whereas the LMW form primarily retained reductase activity. Deletion of the N-terminal zinc-binding domain abolished the redox-dependent structural transition and impaired chaperone activation, demonstrating that this domain is required for stress-responsive functional switching. These findings identify EcTrx2 as a redox-regulated molecular chaperone and provide a mechanistic basis for reversible structural and functional switching in a bacterial thioredoxin during oxidative stress.

키워드

Thioredoxin; Redox switch; Molecular chaperone; Oligomerization; Oxidative stress; HEAT-SHOCK; PROTEIN
제목
Redox-dependent structural switching converts Escherichia coli thioredoxin 2 into a molecular chaperone
저자
Jung, Young Jun; Park, Joung Hun; Kang, Chang Ho; Lee, Eun Seon; Paeng, Seol Ki; Chae, Ho Byoung; Lee, Jung Ro; Lee, Sang Yeol
DOI
10.1016/j.bbrc.2026.154523
발행일
2026-10
유형
Article
저널명
Biochemical and Biophysical Research Communications
권
835