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Inhibition of Mycobacterium tuberculosis transaminase BioA by aryl hydrazines and hydrazides.


ABSTRACT: 7,8-Diaminopelargonic acid synthase (BioA) of Mycobacterium tuberculosis is a recently validated target for therapeutic intervention in the treatment of tuberculosis (TB). Using biophysical fragment screening and structural characterization of compounds, we have identified a potent aryl hydrazine inhibitor of BioA that reversibly modifies the pyridoxal-5'-phosphate (PLP) cofactor, forming a stable quinonoid. Analogous hydrazides also form covalent adducts that can be observed crystallographically but are incapable of inactivating the enzyme. In the X-ray crystal structures, small molecules induce unexpected conformational remodeling in the substrate binding site. We compared these conformational changes to those induced upon binding of the substrate (7-keto-8-aminopelargonic acid), and characterized the inhibition kinetics and the X-ray crystal structures of BioA with the hydrazine compound and analogues to unveil the mechanism of this reversible covalent modification.

SUBMITTER: Dai R 

PROVIDER: S-EPMC4020011 | biostudies-literature | 2014 Mar

REPOSITORIES: biostudies-literature

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Inhibition of Mycobacterium tuberculosis transaminase BioA by aryl hydrazines and hydrazides.

Dai Ran R   Wilson Daniel J DJ   Geders Todd W TW   Aldrich Courtney C CC   Finzel Barry C BC  

Chembiochem : a European journal of chemical biology 20140131 4


7,8-Diaminopelargonic acid synthase (BioA) of Mycobacterium tuberculosis is a recently validated target for therapeutic intervention in the treatment of tuberculosis (TB). Using biophysical fragment screening and structural characterization of compounds, we have identified a potent aryl hydrazine inhibitor of BioA that reversibly modifies the pyridoxal-5'-phosphate (PLP) cofactor, forming a stable quinonoid. Analogous hydrazides also form covalent adducts that can be observed crystallographicall  ...[more]

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