OBJECTIVE: Mutations in ATP1A3, the gene that encodes the α3 subunit of the Na(+)/K(+) ATPase, are the primary cause of alternating hemiplegia of childhood (AHC). Correlations between different mutations and AHC severity were recently reported, with E815K identified in severe and D801N and G947R in milder cases. This study aims to explore the molecular pathological mechanisms in AHC and to identify functional correlates for mutations associated with different levels of disease severity. METHODS: Human wild type ATP1A3, and E815K, D801N and G947R mutants were expressed in Xenopus laevis oocytes and Na(+)/K(+) ATPase function measured. Structural homology models of the human α3 subunit containing AHC mutations were created. RESULTS: The AHC m...
Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients with alternat...
<div><p>Alternating hemiplegia of childhood (AHC) is a rare and severe neurological disorder. <i>ATP...
Background: Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients w...
AbstractDe novo mutations in ATP1A3, the gene encoding the α3-subunit of Na+,K+-ATPase, are associat...
<div><p>Mutations in <i>ATP1A3</i> cause Alternating Hemiplegia of Childhood (AHC) by disrupting fun...
De novo mutations in ATP1A3, the gene encoding the alpha3-subunit of Na(+),K(+)-ATPase, are associat...
© 2014 Dr. Melody Yuen Sin LiNeurological disorders have devastating outcomes and are predicted to b...
Missense mutations in ATP1A3 encoding Na(+),K(+)-ATPase α3 have been identified as the primary cause...
Heterozygous mutations in the ATP1A3 gene, coding for an alpha subunit isoform (α3) of Na+/K+-ATPase...
Mutations in ATP1A3 cause Alternating Hemiplegia of Childhood (AHC) by disrupting function of the ne...
Missense mutations in ATP1A3 encoding Na+,K+-ATPase a3 have been identified as the primary cause of ...
Missense mutations in ATP1A3 encoding Na+,K+-ATPase α3 are the primary cause of alternating hemipleg...
BACKGROUND: Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients...
Missense mutations in ATP1A3 encoding Na+,K+-ATPase α3 are the primary cause of alternating hemipleg...
BACKGROUND: Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients w...
Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients with alternat...
<div><p>Alternating hemiplegia of childhood (AHC) is a rare and severe neurological disorder. <i>ATP...
Background: Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients w...
AbstractDe novo mutations in ATP1A3, the gene encoding the α3-subunit of Na+,K+-ATPase, are associat...
<div><p>Mutations in <i>ATP1A3</i> cause Alternating Hemiplegia of Childhood (AHC) by disrupting fun...
De novo mutations in ATP1A3, the gene encoding the alpha3-subunit of Na(+),K(+)-ATPase, are associat...
© 2014 Dr. Melody Yuen Sin LiNeurological disorders have devastating outcomes and are predicted to b...
Missense mutations in ATP1A3 encoding Na(+),K(+)-ATPase α3 have been identified as the primary cause...
Heterozygous mutations in the ATP1A3 gene, coding for an alpha subunit isoform (α3) of Na+/K+-ATPase...
Mutations in ATP1A3 cause Alternating Hemiplegia of Childhood (AHC) by disrupting function of the ne...
Missense mutations in ATP1A3 encoding Na+,K+-ATPase a3 have been identified as the primary cause of ...
Missense mutations in ATP1A3 encoding Na+,K+-ATPase α3 are the primary cause of alternating hemipleg...
BACKGROUND: Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients...
Missense mutations in ATP1A3 encoding Na+,K+-ATPase α3 are the primary cause of alternating hemipleg...
BACKGROUND: Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients w...
Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients with alternat...
<div><p>Alternating hemiplegia of childhood (AHC) is a rare and severe neurological disorder. <i>ATP...
Background: Mutations in the gene ATP1A3 have recently been identified to be prevalent in patients w...