Magnesium transporter 1 (MAGT1) critically mediates magnesium homeostasis in eukaryotes and is highly-conserved across different evolutionary branches. In humans, loss– of–function mutations in the MAGT1 gene cause X-linked magnesium deficiency with Epstein-Barr virus (EBV) infection and neoplasia (XMEN), a disease that has a broad range of clinical and immunological consequences. We have previously shown that EBV susceptibility in XMEN is associated with defective expression of the antiviral natural-killer group 2 member D (NKG2D) protein and abnormal Mg transport. New evidence suggests that MAGT1 is the human homolog of the yeast OST3/ OST6 proteins that form an integral part of the N-linked glycosylation complex, although the exact contr...
The past decade has witnessed multiple advances in our understanding of magnesium (Mg(2+)) homeostas...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
Disturbances in magnesium homeostasis, often linked to altered expression and/or function of magnesi...
The etiologies of human primary immunodeficiencies (PIDs) often yield novel insights about the immun...
Congenital disorders of glycosylation (CDG) are a group of rare metabolic diseases, due to impaired ...
The magnesium ion, Mg2+, is essential for all life as a cofactor for ATP, polyphosphates such as DNA...
X-linked immunodeficiency with magnesium defect, EBV infection, and neoplasia (XMEN) disease are cau...
Congenital Disorders of Glycosylation (CDG) are a rapidly growing and heterogeneous group of rare me...
Background: MAGT1 (magnesium transporter 1) is a subunit of the oligosaccharide protein complex with...
BACKGROUND: MAGT1 (magnesium transporter 1) is a subunit of the oligosaccharide protein complex with...
Background: Intracellular magnesium is abundant, highly regulated and plays an impo...
Magnesium is a divalent cation that is essential for human growth and wellbeing. It is critical in ...
Background: Magnesium is an essential ion that is a cofactor for many important proteins and enzymes...
AbstractMagnesium (Mg2+) transport across membranes plays an essential role in cellular growth and s...
The past decade has witnessed multiple advances in our understanding of magnesium (Mg(2+)) homeostas...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
Disturbances in magnesium homeostasis, often linked to altered expression and/or function of magnesi...
The etiologies of human primary immunodeficiencies (PIDs) often yield novel insights about the immun...
Congenital disorders of glycosylation (CDG) are a group of rare metabolic diseases, due to impaired ...
The magnesium ion, Mg2+, is essential for all life as a cofactor for ATP, polyphosphates such as DNA...
X-linked immunodeficiency with magnesium defect, EBV infection, and neoplasia (XMEN) disease are cau...
Congenital Disorders of Glycosylation (CDG) are a rapidly growing and heterogeneous group of rare me...
Background: MAGT1 (magnesium transporter 1) is a subunit of the oligosaccharide protein complex with...
BACKGROUND: MAGT1 (magnesium transporter 1) is a subunit of the oligosaccharide protein complex with...
Background: Intracellular magnesium is abundant, highly regulated and plays an impo...
Magnesium is a divalent cation that is essential for human growth and wellbeing. It is critical in ...
Background: Magnesium is an essential ion that is a cofactor for many important proteins and enzymes...
AbstractMagnesium (Mg2+) transport across membranes plays an essential role in cellular growth and s...
The past decade has witnessed multiple advances in our understanding of magnesium (Mg(2+)) homeostas...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...
Magnesium (Mg21) is the fourth most abundant cation in the body. Thus, magnesium homeostasis needs t...