Polyamines are abundant polycationic compounds involved in many plant physiological processes such as cell division, dormancy breaking, plant morphogenesis and response to environmental stresses. In this study, we investigated the possible role of these polycations in modulating the association of 14-3-3 proteins with the H+-ATPase. In vivo experiments demonstrate that, among the different polyamines, spermine brings about 2-fold stimulation of the H+-ATPase activity and this effect is due to an increase in 14-3-3 levels associated with the enzyme. In vivo administration of polyamine synthesis inhibitors causes a small but statistically significant decrease of the H+-ATPase phosphohydrolytic activity, demonstrating a physiological role for ...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
The conversion of putrescine to spermidine in the biosynthetic pathway of plant polyamines is cataly...
Polyamines, such as putrescine (Put), spermidine (Spd), and spermine (Spm), are low-molecular-weight...
Polyamines are abundant polycationic compounds involved in many plant physiological processes such a...
14-3-3 proteins are a family of dimeric proteins found in in every eukaryotic organism. Over 100 pro...
Polyamines play a regulatory role in eukaryotic cell growth and morphogenesis. Despite many molecula...
This work critically discusses the direct and indirect effects of natural polyamines and their catab...
The effect of polyamines on F,-ATPase catalyzed reactions has been studied through the use of submit...
Soil salinity is an increasing problem world-wide. High salt concentrations in root medium inhibit c...
AbstractThe three major polyamines are normally found in chloroplasts of higher plants and are impli...
Polyamines are ubiquitous, biogenic amines that have been implicated in diverse cellular functions i...
Polyamines are ubiquitous polycationic aliphatic compounds known to be essential in physiological re...
Compelling evidence indicates that free polyamines (PAs) (mainly putrescine, spermidine, spermine, a...
AbstractSpermine at concentrations of 12–100 μM considerably activates the Ca2+ transport system of ...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
The conversion of putrescine to spermidine in the biosynthetic pathway of plant polyamines is cataly...
Polyamines, such as putrescine (Put), spermidine (Spd), and spermine (Spm), are low-molecular-weight...
Polyamines are abundant polycationic compounds involved in many plant physiological processes such a...
14-3-3 proteins are a family of dimeric proteins found in in every eukaryotic organism. Over 100 pro...
Polyamines play a regulatory role in eukaryotic cell growth and morphogenesis. Despite many molecula...
This work critically discusses the direct and indirect effects of natural polyamines and their catab...
The effect of polyamines on F,-ATPase catalyzed reactions has been studied through the use of submit...
Soil salinity is an increasing problem world-wide. High salt concentrations in root medium inhibit c...
AbstractThe three major polyamines are normally found in chloroplasts of higher plants and are impli...
Polyamines are ubiquitous, biogenic amines that have been implicated in diverse cellular functions i...
Polyamines are ubiquitous polycationic aliphatic compounds known to be essential in physiological re...
Compelling evidence indicates that free polyamines (PAs) (mainly putrescine, spermidine, spermine, a...
AbstractSpermine at concentrations of 12–100 μM considerably activates the Ca2+ transport system of ...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
The conversion of putrescine to spermidine in the biosynthetic pathway of plant polyamines is cataly...
Polyamines, such as putrescine (Put), spermidine (Spd), and spermine (Spm), are low-molecular-weight...