The dynamics of metal binding to and transfer from metalloproteins involved in metal homeostasis are important for understanding cellular distribution of metal ions. The dicotyledonous plant Arabidopsis thaliana has two type 4 seed-specific metallothionein homologues, MT4a and MT4b, with likely roles in zinc(II) homeostasis. These two metallothioneins are 84% identical, with full conservation of all metal-binding cysteine and histidine residues. Yet, differences in their spatial and temporal expression patterns suggested divergence in their biological roles. To investigate whether biological functions are reflected in molecular properties, we compare aspects of zinc(II)-binding dynamics of full-length MT4a and MT4b, namely the pH dependence...
The handling of trace elements by plants plays a fundamental role in food security and safety. There...
The structure of the unique metal-binding protein, metallothionein (MT), consists of two metal-thiol...
The PIB ATPase heavy metal ATPase 4 (HMA4) has a central role in the zinc homeostasis network of Ara...
The dynamics of metal binding to and transfer from metalloproteins involved in metal homeostasis are...
The dynamics of metal binding to and transfer from metalloproteins involved in metal homeostasis are...
Metallothioneins (MTs) are a superfamily of Cys-rich, low-molecular weight metalloproteins that bind...
The selectivity of proteins involved in metal ion homeostasis is an important part of the puzzle to ...
Metallothioneins (MTs) are low-molecular-weight (4-8 kDa), cysteine-rich proteins that can bind meta...
Metalothioneins (MTs) are metal binding proteins that can bind metals such as Cu, Zn, and Cd but the...
Early cysteine labeled (E-c) proteins are plant metallothioneins, which were first identified in whe...
Metallothioneins (MTs) are small cysteine-rich metal-binding proteins found in most eukaryotes and a...
In Arabidopsis thaliana, metallothioneins (MTs) are encoded by a seven member gene family. To examin...
The problem of handling zinc in the cell is of great importance because zinc is an indis-pensable mi...
The direct observation of binding and release of spectroscopically silent metal ions such as Zn2+ an...
Metallothioneins (MTs) are small cysteine-rich proteins coordinating various transition metal ions, ...
The handling of trace elements by plants plays a fundamental role in food security and safety. There...
The structure of the unique metal-binding protein, metallothionein (MT), consists of two metal-thiol...
The PIB ATPase heavy metal ATPase 4 (HMA4) has a central role in the zinc homeostasis network of Ara...
The dynamics of metal binding to and transfer from metalloproteins involved in metal homeostasis are...
The dynamics of metal binding to and transfer from metalloproteins involved in metal homeostasis are...
Metallothioneins (MTs) are a superfamily of Cys-rich, low-molecular weight metalloproteins that bind...
The selectivity of proteins involved in metal ion homeostasis is an important part of the puzzle to ...
Metallothioneins (MTs) are low-molecular-weight (4-8 kDa), cysteine-rich proteins that can bind meta...
Metalothioneins (MTs) are metal binding proteins that can bind metals such as Cu, Zn, and Cd but the...
Early cysteine labeled (E-c) proteins are plant metallothioneins, which were first identified in whe...
Metallothioneins (MTs) are small cysteine-rich metal-binding proteins found in most eukaryotes and a...
In Arabidopsis thaliana, metallothioneins (MTs) are encoded by a seven member gene family. To examin...
The problem of handling zinc in the cell is of great importance because zinc is an indis-pensable mi...
The direct observation of binding and release of spectroscopically silent metal ions such as Zn2+ an...
Metallothioneins (MTs) are small cysteine-rich proteins coordinating various transition metal ions, ...
The handling of trace elements by plants plays a fundamental role in food security and safety. There...
The structure of the unique metal-binding protein, metallothionein (MT), consists of two metal-thiol...
The PIB ATPase heavy metal ATPase 4 (HMA4) has a central role in the zinc homeostasis network of Ara...