Protein Information

ID 1254
Name F0F1 ATPase
Synonyms ATP synthase H+ transporting mitochondrial F1 complex epsilon subunit; ATP synthase epsilon chain mitochondrial; ATP5E; ATP5E protein; ATPE; F0F1 ATPase; H+ transporting two sector ATPase; Mitochondrial ATP synthase epsilon chain…

Compound Information

ID 615
Name sodium azide
CAS sodium azide

Reference

PubMed Abstract RScore(About this table)
16550463 Poladyan A, Trchounian A: The increase in the number of accessible SH-groups in the enterococcal membrane vesicles by ATP and nicotinamide adenine dinucleotides. Curr Microbiol. 2006 Apr;52(4):300-4. Epub 2006 Mar 18.
The number of accessible SH groups was determined in membrane vesicles prepared from Enterococcus hirae grown under anaerobic conditions at alkaline pH (pH 8.0). Addition of ATP or nicotinamide adenine dinucleotides (NAD (+) +NADH) to the vesicles caused a approximately 4-fold or approximately 1.9-fold increase in the number of SH-groups, respectively. This was inhibited by treatment with N-ethylmaleimide. The increase was significant when ATP and NAD (+) +NADH both were added. The change was lacking in the presence of the F0F1-ATPase inhibitors N,N'-diclohexylcarbodiimide or sodium azide. This was also absent in atp mutant with defect in the F0F1-ATPase and, in addition, it was less in potassium ion-free medium. These results are correlated with data about K+-dependent F0F1-ATPase activity, suggesting a relationship between the F0F1-ATPase and K+ uptake Trk-like system. The latter may be regulated by NAD or NADH mediating conformational changes.
33(0,1,1,3)