Title : HFE polymorphisms affect cellular glutamate regulation.

Pub. Date : 2011 Jun

PMID : 19560233






8 Functional Relationships(s)
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1 HFE polymorphisms affect cellular glutamate regulation. Glutamic Acid homeostatic iron regulator Homo sapiens
2 In support of this hypothesis, expression of H63D HFE is associated with increased calcium-induced glutamate secretion and decreased cellular glutamate uptake. Glutamic Acid homeostatic iron regulator Homo sapiens
3 In support of this hypothesis, expression of H63D HFE is associated with increased calcium-induced glutamate secretion and decreased cellular glutamate uptake. Glutamic Acid homeostatic iron regulator Homo sapiens
4 HFE-dependent effects on glutamate uptake were confirmed in astrocytoma cell lines with endogenous expression of HFE. Glutamic Acid homeostatic iron regulator Homo sapiens
5 HFE-dependent effects on glutamate uptake were confirmed in astrocytoma cell lines with endogenous expression of HFE. Glutamic Acid homeostatic iron regulator Homo sapiens
6 The ability of minocycline and the antioxidant Trolox to increase glutamate uptake differed by HFE genotype and implicate oxidative stress in glutamate regulation. Glutamic Acid homeostatic iron regulator Homo sapiens
7 This study demonstrates HFE cellular effects that extend beyond iron regulation, and suggests that H63D HFE may promote glutamate toxicity. Glutamic Acid homeostatic iron regulator Homo sapiens
8 This study demonstrates HFE cellular effects that extend beyond iron regulation, and suggests that H63D HFE may promote glutamate toxicity. Glutamic Acid homeostatic iron regulator Homo sapiens