Recent discoveries in zinc biology provide a new platform for discussing the primary physiological functions of mammalian metallothioneins (MTs) and their exquisite zinc-dependent regulation. It is now understood that the control of cellular zinc homeostasis includes buffering of Zn2+ ions at picomolar concentrations, extensive subcellular re-distribution of Zn2+, the loading of exocytotic vesicles with zinc species, and the control of Zn2+ ion signalling. In parallel, characteristic features of human MTs became known: their graded affinities for Zn2+ and the redox activity of their thiolate coordination environments. Unlike the single species that structural models of mammalian MTs describe with a set of seven divalent or eight to twelve m...
Metallothioneins (MTs) are low-molecular-weight cystein-rich metal-binding proteins that are involve...
Nutritional immunity describes mechanisms for withholding essential transition metals as well as dir...
Zinc is a ubiquitous biological metal in all living organisms. The spatiotemporal zinc dynamics in c...
The functions, purposes, and roles of metallothioneins have been the subject of speculations since t...
Metallothioneins (MTs) are a class of ubiquitously occurring low molecular mass, cysteine- and metal...
Metallothioneins (MTs) were discovered more than 50 years ago and identified as low-molecular weight...
Around 3000 proteins are thought to bind zinc in vivo, which corresponds to ~10% of the human proteo...
Metallothioneins (MT) are low molecular weight, cysteine-rich, metal-binding proteins that are thoug...
Homeostatic control maintains essential transition metal ions at characteristic cellular concentrati...
The cellular constitution of Zn-proteins and Zn-dependent signaling depend on the capacity of Zn2+ t...
Our knowledge of the molecular mechanisms of intracellular homeostatic control of zinc ions is now f...
The structure of the unique metal-binding protein, metallothionein (MT), consists of two metal-thiol...
Zinc is an essential trace mineral required for the normal function of many zinc-containing binding...
16 p.-5 fig.-3 tab.-1 graph. abst.Mammalian metallothioneins (MTs) are a group of cysteine-rich prot...
Zinc is an essential trace element for life. Zinc is not only an important nutrient, cofactor of num...
Metallothioneins (MTs) are low-molecular-weight cystein-rich metal-binding proteins that are involve...
Nutritional immunity describes mechanisms for withholding essential transition metals as well as dir...
Zinc is a ubiquitous biological metal in all living organisms. The spatiotemporal zinc dynamics in c...
The functions, purposes, and roles of metallothioneins have been the subject of speculations since t...
Metallothioneins (MTs) are a class of ubiquitously occurring low molecular mass, cysteine- and metal...
Metallothioneins (MTs) were discovered more than 50 years ago and identified as low-molecular weight...
Around 3000 proteins are thought to bind zinc in vivo, which corresponds to ~10% of the human proteo...
Metallothioneins (MT) are low molecular weight, cysteine-rich, metal-binding proteins that are thoug...
Homeostatic control maintains essential transition metal ions at characteristic cellular concentrati...
The cellular constitution of Zn-proteins and Zn-dependent signaling depend on the capacity of Zn2+ t...
Our knowledge of the molecular mechanisms of intracellular homeostatic control of zinc ions is now f...
The structure of the unique metal-binding protein, metallothionein (MT), consists of two metal-thiol...
Zinc is an essential trace mineral required for the normal function of many zinc-containing binding...
16 p.-5 fig.-3 tab.-1 graph. abst.Mammalian metallothioneins (MTs) are a group of cysteine-rich prot...
Zinc is an essential trace element for life. Zinc is not only an important nutrient, cofactor of num...
Metallothioneins (MTs) are low-molecular-weight cystein-rich metal-binding proteins that are involve...
Nutritional immunity describes mechanisms for withholding essential transition metals as well as dir...
Zinc is a ubiquitous biological metal in all living organisms. The spatiotemporal zinc dynamics in c...