The dynamic interaction of the N- and C-terminal domains of mycobacterial F-ATP synthase subunit ε is proposed to contribute to efficient coupling of H+-translocation and ATP synthesis. Here, we investigate crosstalk between both subunit ε domains by introducing chromosomal atpC missense mutations in the C-terminal helix 2 of ε predicted to disrupt inter domain and subunit ε-α crosstalk and therefore coupling. The ε mutant εR105A,R111A,R113A,R115A (ε4A) showed decreased intracellular ATP, slower growth rates and lower molar growth yields on non-fermentable carbon sources. Cellular respiration and metabolism were all accelerated in the mutant strain indicative of dysregulated oxidative phosphorylation. The ε4A mutant exhibited an altered col...
The ATP synthases/ATPases arose from a common ancestor and, therefore, A1AO ATP synthases share prop...
The causative agent of Tuberculosis (TB) Mycobacterium tuberculosis (Mtb) encounters unfavourable en...
Bacterial F-type ATP synthases are large molecular weight protein complexes composed of a membrane-e...
While many bacteria are able to bypass the requirement for oxidative phosphorylation when grown on c...
Mycobacteria regulate their energy (ATP) levels to sustain their survival even in stringent living ...
The F1F0 -ATP (F-ATP) synthase is essential for growth of Mycobacterium tuberculosis, the causative ...
The F1F0 -ATP (F-ATP) synthase is essential for growth of Mycobacterium tuberculosis, the causative ...
Tuberculosis infection has been the leading cause of mortality due to the infectious agent Mycobacte...
F-ATP synthases are multimeric membrane-embedded proteins which can synthesize/hydrolyze ATP dependi...
F-ATP synthases are multimeric membrane-embedded proteins which can synthesize/hydrolyze ATP dependi...
Mycobacterium tuberculosis (Mt) F1F0 ATP synthase (α3:β3:γ:δ:ε:a:b:b′:c9) is essential for the viabi...
Mycobacterium tuberculosis (Mt) F1F0 ATP synthase (α3:β3:γ:δ:ε:a:b:b′:c9) is essential for the viabi...
In contrast to other prokaryotes, the Mycobacterial F1FO ATP synthase (α3:β3:γ:δ:ε:a:b:b’:c9) is ess...
In contrast to other prokaryotes, the Mycobacterial F1FO ATP synthase (α3:β3:γ:δ:ε:a:b:b’:c9) is ess...
The subunit ε of bacterial F1FO ATP synthases plays an important regulatory role in coupling and cat...
The ATP synthases/ATPases arose from a common ancestor and, therefore, A1AO ATP synthases share prop...
The causative agent of Tuberculosis (TB) Mycobacterium tuberculosis (Mtb) encounters unfavourable en...
Bacterial F-type ATP synthases are large molecular weight protein complexes composed of a membrane-e...
While many bacteria are able to bypass the requirement for oxidative phosphorylation when grown on c...
Mycobacteria regulate their energy (ATP) levels to sustain their survival even in stringent living ...
The F1F0 -ATP (F-ATP) synthase is essential for growth of Mycobacterium tuberculosis, the causative ...
The F1F0 -ATP (F-ATP) synthase is essential for growth of Mycobacterium tuberculosis, the causative ...
Tuberculosis infection has been the leading cause of mortality due to the infectious agent Mycobacte...
F-ATP synthases are multimeric membrane-embedded proteins which can synthesize/hydrolyze ATP dependi...
F-ATP synthases are multimeric membrane-embedded proteins which can synthesize/hydrolyze ATP dependi...
Mycobacterium tuberculosis (Mt) F1F0 ATP synthase (α3:β3:γ:δ:ε:a:b:b′:c9) is essential for the viabi...
Mycobacterium tuberculosis (Mt) F1F0 ATP synthase (α3:β3:γ:δ:ε:a:b:b′:c9) is essential for the viabi...
In contrast to other prokaryotes, the Mycobacterial F1FO ATP synthase (α3:β3:γ:δ:ε:a:b:b’:c9) is ess...
In contrast to other prokaryotes, the Mycobacterial F1FO ATP synthase (α3:β3:γ:δ:ε:a:b:b’:c9) is ess...
The subunit ε of bacterial F1FO ATP synthases plays an important regulatory role in coupling and cat...
The ATP synthases/ATPases arose from a common ancestor and, therefore, A1AO ATP synthases share prop...
The causative agent of Tuberculosis (TB) Mycobacterium tuberculosis (Mtb) encounters unfavourable en...
Bacterial F-type ATP synthases are large molecular weight protein complexes composed of a membrane-e...