Author:
Biuković Goran,Basak Sandip,Manimekalai Malathy Sony Subramanian,Rishikesan Sankaranarayanan,Roessle Manfred,Dick Thomas,Rao Srinivasa P. S.,Hunke Cornelia,Grüber Gerhard
Abstract
ABSTRACTThe subunit ε of bacterial F1FOATP synthases plays an important regulatory role in coupling and catalysis via conformational transitions of its C-terminal domain. Here we present the first low-resolution solution structure of ε ofMycobacterium tuberculosis(Mtε) F1FOATP synthase and the nuclear magnetic resonance (NMR) structure of its C-terminal segment (Mtε103–120).Mtε is significantly shorter (61.6 Å) than forms of the subunit in other bacteria, reflecting a shorter C-terminal sequence, proposed to be important in coupling processes via the catalytic β subunit. The C-terminal segment displays an α-helical structure and a highly positive surface charge due to the presence of arginine residues. Using NMR spectroscopy, fluorescence spectroscopy, and mutagenesis, we demonstrate that the new tuberculosis (TB) drug candidate TMC207, proposed to bind to the proton translocatingc-ring, also binds toMtε. A model for the interaction of TMC207 with both ε and thec-ring is presented, suggesting that TMC207 forms a wedge between the two rotating subunits by interacting with the residues W15 and F50 of ε and thec-ring, respectively. T19 and R37 of ε provide the necessary polar interactions with the drug molecule. This new model of the mechanism of TMC207 provides the basis for the design of new drugs targeting the F1FOATP synthase inM. tuberculosis.
Publisher
American Society for Microbiology
Subject
Infectious Diseases,Pharmacology (medical),Pharmacology
Cited by
62 articles.
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