Item does not contain fulltextBacillus subtilis possesses two glyceraldehyde-3-phosphate dehydrogenases with opposite roles, the glycolytic NAD-dependent GapA and the NADP-dependent GapB enzyme, which is exclusively required during gluconeogenesis but not active under conditions promoting glycolysis. We propose that proteins that are no longer needed will be recognized and proteolyzed by Clp proteases and thereby recycled. To test this postulation, we analyzed the stability of the glycolytic enzyme GapA and the gluconeogenetic enzyme GapB in the presence and absence of glucose. It turned out that GapA remained rather stable under both glycolytic and gluconeogenetic conditions. In contrast, the gluconeogenetic enzyme GapB was degraded after ...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
BackgroundATP-dependent proteases translocate and unfold their substrates.ResultsA human virus seque...
Proteolysis is essential for all living organisms to maintain the protein homeostasis and to adapt t...
Proteolysis is essential for all living organisms to maintain the protein homeostasis and to adapt t...
Entry into stationary phase in Bacillus subtilis is linked not only to a redirection of the gene exp...
Entry into stationary phase in Bacillus subtilis is linked not only to a redirection of the gene exp...
Entry into stationary phase in Bacillus subtilis is linked not only to a redirection of the gene exp...
Bacillus subtilis can grow on glycerol or glycerol-3-phosphate (G3P) as the sole carbon and energy s...
AAA+ (ATPases associated with various cellular activities) proteolytic machines help maintain and ad...
Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is considered a multifunctional protein with define...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
Glycolysis is one of the most important metabolic pathways in heterotrophic organisms. Several genes...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
BackgroundATP-dependent proteases translocate and unfold their substrates.ResultsA human virus seque...
Proteolysis is essential for all living organisms to maintain the protein homeostasis and to adapt t...
Proteolysis is essential for all living organisms to maintain the protein homeostasis and to adapt t...
Entry into stationary phase in Bacillus subtilis is linked not only to a redirection of the gene exp...
Entry into stationary phase in Bacillus subtilis is linked not only to a redirection of the gene exp...
Entry into stationary phase in Bacillus subtilis is linked not only to a redirection of the gene exp...
Bacillus subtilis can grow on glycerol or glycerol-3-phosphate (G3P) as the sole carbon and energy s...
AAA+ (ATPases associated with various cellular activities) proteolytic machines help maintain and ad...
Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is considered a multifunctional protein with define...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
Glycolysis is one of the most important metabolic pathways in heterotrophic organisms. Several genes...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
The general protein secretion pathway of Bacillus subtilis has a high capacity for protein export fr...
BackgroundATP-dependent proteases translocate and unfold their substrates.ResultsA human virus seque...