AbstractThe Arabidopsis thaliana AtHMA4 is a P1B-type ATPase that clusters with the Zn/Cd/Pb/Co subgroup. It has been previously shown, by heterologous expression and the study of AtHMA4 knockout or overexpressing lines in Arabidopsis [1–3], that AtHMA4 is implicated in zinc homeostasis and cadmium tolerance. Here, we report the study of the heterologous expression of AtHMA4 in the yeast Saccharomyces cerevisiae. AtHMA4 expression resulted in an increased tolerance to Zn, Cd and Pb and to a phenotypic complementation of hypersensitive mutants. In contrast, an increased sensitivity towards Co was observed. An AtHMA4::GFP fusion protein was observed in endocytic vesicles and at the yeast plasma membrane. Mutagenesis of the cysteine and glutam...
Heavy metal transporters belonging to the P(1B)-ATPase subfamily of P-type ATPases are key players i...
<div><p>Heavy metal transporters belonging to the P<sub>1B</sub>-ATPase subfamily of P-type ATPases ...
Manipulation of crops to improve their nutritional value (biofortification) and optimisation of plan...
Mechanisms are required by all organisms to maintain the concentration of essential heavy metals (e....
The transition metal Zn is essential for many physiological processes in plants, yet at elevated con...
AbstractThe transition metal Zn is essential for many physiological processes in plants, yet at elev...
Heavy metal pumps (P1B-ATPases) are important for cellular heavy metal homeostasis. AtHMA4, an Arabi...
AbstractThe Arabidopsis thaliana AtHMA3 protein belongs to the P1B-adenosine triphosphatase (ATPase)...
AbstractThe Arabidopsis thaliana AtHMA3 protein belongs to the P1B-adenosine triphosphatase (ATPase)...
AbstractAtHMA4 is an Arabidopsis thaliana P1B-ATPase which transports Zn and Cd. Here, we demonstrat...
This study has focused on a number of HMA transporters present in Arabidopsis thaliana, with particu...
Cadmium (Cd) is highly toxic to the environment and humans. Plants are capable of absorbing Cd from ...
Genetic modification of Zn/Cd accumulation in roots and shoots for biofortification or phytoremediat...
Heavy metal transporters belonging to the P1B-ATPase subfamily of P-type ATPases are key players in ...
Background: Enhancing the upward translocation of heavy metals such as Zn from root to shoot through...
Heavy metal transporters belonging to the P(1B)-ATPase subfamily of P-type ATPases are key players i...
<div><p>Heavy metal transporters belonging to the P<sub>1B</sub>-ATPase subfamily of P-type ATPases ...
Manipulation of crops to improve their nutritional value (biofortification) and optimisation of plan...
Mechanisms are required by all organisms to maintain the concentration of essential heavy metals (e....
The transition metal Zn is essential for many physiological processes in plants, yet at elevated con...
AbstractThe transition metal Zn is essential for many physiological processes in plants, yet at elev...
Heavy metal pumps (P1B-ATPases) are important for cellular heavy metal homeostasis. AtHMA4, an Arabi...
AbstractThe Arabidopsis thaliana AtHMA3 protein belongs to the P1B-adenosine triphosphatase (ATPase)...
AbstractThe Arabidopsis thaliana AtHMA3 protein belongs to the P1B-adenosine triphosphatase (ATPase)...
AbstractAtHMA4 is an Arabidopsis thaliana P1B-ATPase which transports Zn and Cd. Here, we demonstrat...
This study has focused on a number of HMA transporters present in Arabidopsis thaliana, with particu...
Cadmium (Cd) is highly toxic to the environment and humans. Plants are capable of absorbing Cd from ...
Genetic modification of Zn/Cd accumulation in roots and shoots for biofortification or phytoremediat...
Heavy metal transporters belonging to the P1B-ATPase subfamily of P-type ATPases are key players in ...
Background: Enhancing the upward translocation of heavy metals such as Zn from root to shoot through...
Heavy metal transporters belonging to the P(1B)-ATPase subfamily of P-type ATPases are key players i...
<div><p>Heavy metal transporters belonging to the P<sub>1B</sub>-ATPase subfamily of P-type ATPases ...
Manipulation of crops to improve their nutritional value (biofortification) and optimisation of plan...