Related Experiment Video
Updated: Jan 19, 2026

A Tuberculosis Molecular Bacterial Load Assay TB-MBLA
Published on: April 30, 2020
Molecular Basis of BioJ, a Unique Gatekeeper in Bacterial Biotin Synthesis
Wenhui Wei1, Hongxin Guan2, Tong Zhu3
1Department of Pathogen Biology & Microbiology and General Intensive Care Unit of Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310058, China; College of Animal Science, Zhejiang University, Hangzhou 310058, China.
Abstract:
Biotin is an indispensable cofactor in the three domains of life. The unusual virulence factor BioJ of Francisella catalyzes the formation of pimeloyl-ACP, an intermediate in biotin synthesis. Here, we report the 1.58 Å crystal structure of BioJ, the enzymatic activity of which is determined with the in vitro reconstituted reaction and biotin bioassay in vivo. Unlike the paradigm BioH, BioJ displays an atypical α/β-hydrolase fold. A structurally conserved catalytic triad (S151, D248, and H278) of BioJ is functionally defined. A proposed model for BioJ catalysis involves two basic residues-rich cavities, of which cavity-1, rather than cavity-2, binds to the ACP moiety of its physiological substrate, pimeloyl-ACP methyl ester. In summary, this finding provides molecular insights into the BioJ gatekeeper of biotin synthesis.
Related Concept Videos
Other Unique Bacteria
Second Uniqueness Theorem
In contrast, consider that the electric field is non-unique and apply Gauss's law in divergence form in the region between the conductors and the integral form to the surface...
10:41A Tuberculosis Molecular Bacterial Load Assay (TB-MBLA)
03:12An Avidin-Biotin Conjugation Technique for Presenting Target Antigens on Mycobacterium bovis BCG
09:10Synthesis of Masarimycin, a Small Molecule Inhibitor of Gram-Positive Bacterial Growth
04:10Helicase Activity Measurement of a Target Protein Using Biotin-Labeled RNA Duplexes
