AbstractCellular pyrophosphate (PPi) homeostasis is vital for normal plant growth and development. Plant proton‐pumping pyrophosphatases (H+‐PPases) are enzymes with different tissue‐specific functions related to the regulation of PPi homeostasis. Enhanced expression of plant H+‐PPases increases biomass and yield in different crop species. Here, we emphasise emerging studies utilising heterologous expression in yeast and plant vacuole electrophysiology approaches, as well as phylogenetic relationships and structural analysis, to showcase that the H+‐PPases possess a PPi synthesis function. We postulate this synthase activity contributes to modulating and promoting plant growth both in H+‐PPase‐engineered crops and in wild‐type plants. We pr...
Magnesium (Mg2+) is an essential nutrient in all organisms. However, high levels of Mg2+ in the envi...
abstract: Phosphorus (P), an element required for plant growth, fruit set, fruit development, and fr...
Proton pumps create a proton motif force and thus, energize secondary active transport at the plasma...
Cellular pyrophosphate (PPi) homeostasis is vital for normal plant growth and development. Plant pro...
abstract: Agbiotechnology uses genetic engineering to improve the output and value of crops. Alterin...
Altres ajuts: RG and KH were supported by the National Science Foundation (grant no. IOS-1557890). K...
AbstractThe H+-translocating inorganic pyrophosphatase (H+-PPase) is a unique, electrogenic proton p...
The regulation of intracellular pyrophosphate (PPi) level is crucial for proper morphogenesis across...
Vacuolar pyrophosphatase (V-PPase), as well as vacuolar ATPase, generates electro-chemical gradients...
Overexpression of membrane-bound K+-dependent H+-translocating inorganic pyrophosphatases (H+-PPases...
Two types of proteins that hydrolyze inorganic pyrophosphate (PPi), very different in both amino aci...
The plant plasma membrane H+-ATPase couples ATP hydrolysis with proton transport outside the cell an...
Overexpression of membrane-bound K+-dependent H+-translocating inorganic pyrophosphatases (H+-PPase...
The membrane-bound proton-pumping pyrophosphatase (V-PPase), together with the V-type H+ -ATPase, ge...
AbstractChemiosmotic circuits of plant cells are driven by proton (H+) gradients that mediate second...
Magnesium (Mg2+) is an essential nutrient in all organisms. However, high levels of Mg2+ in the envi...
abstract: Phosphorus (P), an element required for plant growth, fruit set, fruit development, and fr...
Proton pumps create a proton motif force and thus, energize secondary active transport at the plasma...
Cellular pyrophosphate (PPi) homeostasis is vital for normal plant growth and development. Plant pro...
abstract: Agbiotechnology uses genetic engineering to improve the output and value of crops. Alterin...
Altres ajuts: RG and KH were supported by the National Science Foundation (grant no. IOS-1557890). K...
AbstractThe H+-translocating inorganic pyrophosphatase (H+-PPase) is a unique, electrogenic proton p...
The regulation of intracellular pyrophosphate (PPi) level is crucial for proper morphogenesis across...
Vacuolar pyrophosphatase (V-PPase), as well as vacuolar ATPase, generates electro-chemical gradients...
Overexpression of membrane-bound K+-dependent H+-translocating inorganic pyrophosphatases (H+-PPases...
Two types of proteins that hydrolyze inorganic pyrophosphate (PPi), very different in both amino aci...
The plant plasma membrane H+-ATPase couples ATP hydrolysis with proton transport outside the cell an...
Overexpression of membrane-bound K+-dependent H+-translocating inorganic pyrophosphatases (H+-PPase...
The membrane-bound proton-pumping pyrophosphatase (V-PPase), together with the V-type H+ -ATPase, ge...
AbstractChemiosmotic circuits of plant cells are driven by proton (H+) gradients that mediate second...
Magnesium (Mg2+) is an essential nutrient in all organisms. However, high levels of Mg2+ in the envi...
abstract: Phosphorus (P), an element required for plant growth, fruit set, fruit development, and fr...
Proton pumps create a proton motif force and thus, energize secondary active transport at the plasma...