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New Insights Into the Function of Flavohemoglobin in Mycobacterium tuberculosis: Role as a NADPH-Dependent Disulfide Reductase and D-Lactate-Dependent Mycothione Reductase.


ABSTRACT: Mycobacterium tuberculosis (Mtb) produces an unconventional flavohemoglobin (MtbFHb) that carries a FAD-binding site similar to D-lactate dehydrogenases (D-LDH) and oxidizes D-lactate into pyruvate. The molecular mechanism by which MtbFHb functions in Mtb remains unknown. We discovered that the D-LDH-type FAD-binding site in MtbFHb overlaps with another FAD-binding motif similar to thioredoxin reductases and reduces DTNB in the presence of NADPH similar to trxB of Mtb. These results suggested that MtbFHb is functioning as a disulfide oxidoreductase. Interestingly, D-lactate created a conformational change in MtbFHb and attenuated its ability to oxidize NADPH. Mass spectroscopy demonstrated that MtbFHb reduces des-myo-inositol mycothiol in the presence of D-lactate unlike NADPH, indicating that D-lactate changes the specificity of MtbFHb from di-thiol to di-mycothiol. When M. smegmatis carrying deletion in the fhbII gene (encoding a homolog of MtbFHb) was complemented with the fhb gene of Mtb, it exhibited four- to fivefold reductions in lipid peroxidation and significant enhancement in the cell survival under oxidative stress. These results were corroborated by reduced lipid peroxidation and enhanced cell survival of wild-type M. smegmatis after overexpression of the fhb gene of Mtb. Since D-lactate is a by-product of lipid peroxidation and MtbFHb is a membrane-associated protein, D-lactate-mediated reduction of mycothiol disulfide by MtbFHb may uniquely equip Mtb to relieve the toxicity of D-lactate accumulation and protect the cell from oxidative damage, simultaneously balancing the redox environment under oxidative stress that may be vital for the pathogenesis of Mtb.

SUBMITTER: Thakur N 

PROVIDER: S-EPMC8883573 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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New Insights Into the Function of Flavohemoglobin in <i>Mycobacterium tuberculosis</i>: Role as a NADPH-Dependent Disulfide Reductase and D-Lactate-Dependent Mycothione Reductase.

Thakur Naveen N   Sharma Amar Nath AN   Hade Mangesh Dattu MD   Chhaya Ajay A   Kumar Ashwani A   Jolly Ravinder Singh RS   Dikshit Kanak L KL  

Frontiers in cellular and infection microbiology 20220210


<i>Mycobacterium tuberculosis</i> (<i>Mtb</i>) produces an unconventional flavohemoglobin (<i>Mtb</i>FHb) that carries a FAD-binding site similar to D-lactate dehydrogenases (D-LDH) and oxidizes D-lactate into pyruvate. The molecular mechanism by which <i>Mtb</i>FHb functions in <i>Mtb</i> remains unknown. We discovered that the D-LDH-type FAD-binding site in <i>Mtb</i>FHb overlaps with another FAD-binding motif similar to thioredoxin reductases and reduces DTNB in the presence of NADPH similar  ...[more]

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