The metabolism of glutamate into ornithine, arginine, proline, and polyamines is a major network of nitrogen-metabolizing pathways in plants, which also produces intermediates like nitric oxide, and γ-aminobutyric acid (GABA) that play critical roles in plant development and stress. While the accumulations of intermediates and the products of this network depend primarily on nitrogen assimilation, the overall regulation of the interacting sub-pathways is not well understood. We tested the hypothesis that diversion of ornithine into polyamine biosynthesis (by transgenic approach) not only plays a role in regulating its own biosynthesis from glutamate but also affects arginine and proline biosynthesis. Using two high putrescine producing line...
Polyamines are low molecular weight polycations found in all living organisms. They are involved in ...
We investigated how over-expression of a cDNA for human ornithine decarboxylase (odc) affects the po...
We investigated whether down-regulation of arginine decarboxylase (ADC) activity and concomitant cha...
The polyamine metabolic pathway is intricately connected to metabolism of several amino acids. While...
We overexpressed a mouse ornithine decarboxylase gene under the control of a constitutive and an est...
Arginine (Arg) and ornithine (Orn), both derived from glutamate (Glu), are the primary substrates fo...
Background: Like many other plant species, Arabidopsis uses arginine (Arg) as a storage and transpor...
Nitrogen is a limiting resource for plant growth in most terrestrial habitats since large amounts of...
The life of proteins starts and ends as amino acids. In addition to the primary function as protein ...
Arginine plays a relevant role in plant metabolism due to its importance as building block of protei...
The metabolism of polyamines (putrescine, spermidine, and spermine) has become the target of genetic...
Polyamines are low molecular weight aliphatic amines that are obligatory requirements for cell survi...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
The ornithine-urea cycle (urea cycle) makes a significant contribution to the metabolic responses of...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
Polyamines are low molecular weight polycations found in all living organisms. They are involved in ...
We investigated how over-expression of a cDNA for human ornithine decarboxylase (odc) affects the po...
We investigated whether down-regulation of arginine decarboxylase (ADC) activity and concomitant cha...
The polyamine metabolic pathway is intricately connected to metabolism of several amino acids. While...
We overexpressed a mouse ornithine decarboxylase gene under the control of a constitutive and an est...
Arginine (Arg) and ornithine (Orn), both derived from glutamate (Glu), are the primary substrates fo...
Background: Like many other plant species, Arabidopsis uses arginine (Arg) as a storage and transpor...
Nitrogen is a limiting resource for plant growth in most terrestrial habitats since large amounts of...
The life of proteins starts and ends as amino acids. In addition to the primary function as protein ...
Arginine plays a relevant role in plant metabolism due to its importance as building block of protei...
The metabolism of polyamines (putrescine, spermidine, and spermine) has become the target of genetic...
Polyamines are low molecular weight aliphatic amines that are obligatory requirements for cell survi...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
The ornithine-urea cycle (urea cycle) makes a significant contribution to the metabolic responses of...
Distribution of biogenic amines-the diamine putrescine (Put), triamine spermidine (Spd), and tetraam...
Polyamines are low molecular weight polycations found in all living organisms. They are involved in ...
We investigated how over-expression of a cDNA for human ornithine decarboxylase (odc) affects the po...
We investigated whether down-regulation of arginine decarboxylase (ADC) activity and concomitant cha...