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Streptococcus pneumoniae TIGR4 Flavodoxin: Structural and Biophysical Characterization of a Novel Drug Target
Ángela Rodríguez-Cárdenas1,2, Adriana L Rojas3, María Conde-Giménez1,2
1Department of Biochemistry and Molecular and Cell Biology, University of Zaragoza, Zaragoza, Spain.
Abstract:
Streptococcus pneumoniae (Sp) strain TIGR4 is a virulent, encapsulated serotype that causes bacteremia, otitis media, meningitis and pneumonia. Increased bacterial resistance and limited efficacy of the available vaccine to some serotypes complicate the treatment of diseases associated to this microorganism. Flavodoxins are bacterial proteins involved in several important metabolic pathways. The Sp flavodoxin (Spfld) gene was recently reported to be essential for the establishment of meningitis in a rat model, which makes SpFld a potential drug target. To facilitate future pharmacological studies, we have cloned and expressed SpFld in E. coli and we have performed an extensive structural and biochemical characterization of both the apo form and its active complex with the FMN cofactor. SpFld is a short-chain flavodoxin containing 146 residues. Unlike the well-characterized long-chain apoflavodoxins, the Sp apoprotein displays a simple two-state thermal unfolding equilibrium and binds FMN with moderate affinity. The X-ray structures of the apo and holo forms of SpFld differ at the FMN binding site, where substantial rearrangement of residues at the 91-100 loop occurs to permit cofactor binding. This work will set up the basis for future studies aiming at discovering new potential drugs to treat S. pneumoniae diseases through the inhibition of SpFld.
Insights
Streptococcus pneumoniae flavodoxin (SpFld) is crucial for meningitis. Researchers characterized SpFld's structure and FMN binding, identifying it as a potential drug target for treating pneumococcal infections.
Area of Science:
- Microbiology
- Structural Biology
- Biochemistry
Background:
- Streptococcus pneumoniae (Sp) causes severe diseases like meningitis, complicated by antibiotic resistance and vaccine limitations.
- Flavodoxins are essential bacterial proteins; Sp flavodoxin (SpFld) is vital for Sp meningitis.
- SpFld presents a promising target for novel antimicrobial drug development.
Purpose of the Study:
- To characterize the structure and biochemical properties of SpFld.
- To provide a basis for developing SpFld inhibitors as potential therapeutics.
Main Methods:
- Cloning and expression of SpFld in E. coli.
- Biochemical characterization of apo-SpFld and its FMN-bound (holo) form.
- X-ray crystallography to determine the structures of apo- and holo-SpFld.
Main Results:
- SpFld is a short-chain flavodoxin (146 residues) with moderate FMN binding affinity.
- A simple two-state thermal unfolding equilibrium was observed for apo-SpFld.
- X-ray structures revealed significant loop rearrangement at the FMN binding site upon cofactor incorporation.
Conclusions:
- The structural and biochemical characterization of SpFld provides a foundation for future drug discovery efforts.
- Targeting SpFld could lead to new treatments for S. pneumoniae infections.
- Understanding SpFld's FMN binding mechanism is key to designing effective inhibitors.
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