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Journals Journal of Microbiology

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Journal of Microbiology


Publications
6

CitationNamesAbstract
Structural and biochemical analyses of a novel bacterial dual specificity phosphatase from Candidatus Chlorohelix allophototropha Jung et al. (2026). Journal of Microbiology 64 (7) Ca. Chlorohelix allophototropha
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Effects of Light and Dark Conditions on the Transcriptome of Aging Cultures of Candidatus Puniceispirillum marinum IMCC1322 Lee, Oh (2024). Journal of Microbiology 62 (4) Puniceispirillum marinum Ts
Ciceribacter ferrooxidans sp. nov., a nitrate-reducing Fe(II)-oxidizing bacterium isolated from ferrous ion-rich sediment Deng et al. (2020). Journal of Microbiology 58 (5) Ciceribacter ferrooxidans
Jejubacter calystegiae gen. nov., sp. nov., moderately halophilic, a new member of the family Enterobacteriaceae, isolated from beach morning glory Jiang et al. (2020). Journal of Microbiology 58 (5) Jejuibacter calystegiae T
Isolation, cultivation, and genome analysis of proteorhodopsin-containing SAR116-clade strain Candidatus Puniceispirillum marinum IMCC1322 Lee et al. (2019). Journal of Microbiology 57 (8) Puniceispirillum marinum Ts
Mesorhizobium denitrificans sp. nov., a novel denitrifying bacterium isolated from sludge Siddiqi et al. (2019). Journal of Microbiology 57 (4) Mesorhizobium denitrificans

Structural and biochemical analyses of a novel bacterial dual specificity phosphatase from Candidatus Chlorohelix allophototropha
Dual specificity phosphatases (DUSPs) are a subfamily of protein tyrosine phosphatases that regulate diverse cellular processes through dephosphorylation of phosphorylated substrates. DUSPs are commonly found in eukaryotes, bacteria, archaea, and viruses. However, structural and biochemical characterization of bacterial DUSP remains limited, as only one bacterial DUSP has been identified thus far. In this study, we investigated a novel putative bacterial DUSP from Candidatus Chlorohelix allophototropha, referred to as CCaDUSP. The crystal structure of CCaDUSP showed the presence of a well-conserved catalytic motif with a characteristic phosphate-binding loop. Biochemical analyses further confirmed that CCaDUSP exhibits phosphatase activity and contains dual general acid/base residues, both of which contribute to its enzymatic activity. These findings not only represent the first characterization of a novel bacterial DUSP with dual general acid/base residues but also provide a foundation for understanding the diversity of DUSP proteins in bacteria.
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