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Dual degradation mechanisms ensure disposal of NHE6 mutant protein associated with neurological disease
Authors:Ingrid Roxrud  Camilla Raiborg  Gregor D Gilfillan  Petter Strømme  Harald Stenmark
Institution:a Centre for Cancer Biomedicine, Faculty of Medicine, University of Oslo, Montebello, N-0310 Oslo, Norway
b Department of Biochemistry, Institute for Cancer Research, The Norwegian Radium Hospital, Oslo University Hospital, Montebello, N-0310 Oslo, Norway
c Department of Medical Genetics, Ullevål University Hospital, Oslo University Hospital, N-0407 Oslo, Norway
d Faculty division Ullevål University Hospital, Faculty of Medicine, University of Oslo, N-0316 Oslo, Norway
e Department of Paediatrics, Ullevål University Hospital, Oslo University Hospital, N-0407 Oslo, Norway
Abstract:Clinical features characterizing Angelman syndrome, previously shown to be caused by disruption of UBE3A, were recently also described in neurologically disabled patients with mutations in SLC9A6, which encodes the Na+/H+ exchanger NHE6. In the present work we have focused on NHE6Δ255-256, the protein product of a specific 6-bp patient deletion in SLC9A6. To resolve the molecular mechanism causing the cellular dysfunction associated with this mutant, we have characterized its intracellular behaviour in comparison to wild type NHE6. Our study demonstrates that NHE6Δ255-256 is much less stable than the wild type protein. Whereas wild type NHE6 is transported to the plasma membrane and early endosomes and remains stable, NHE6Δ255-256 is degraded via two independent pathways mediated by proteasomes and lysosomes, respectively. Depletion of NHE6 had no detectable effect on endosomal pH, but co-depletion of NHE6 and the closely related NHE9 caused enhanced acidification of early endosomes. Our results suggest that NHE6 participates in regulation of endosomal pH and provides a cellular basis for understanding the loss of NHE6 function leading to a neurological phenotype resembling Angelman syndrome.
Keywords:aa  amino acid  EEA1  early-endosomal antigen 1  EGF  epidermal growth factor  EGFR  EGF receptor  ESCRT  endosomal sorting complex required for transport  ER  endoplasmic reticulum  ERAD  ER-associated degradation  GFP  green fluorescent protein  NHE  Na+/H+ exchanger  wt  wild type  bp  base pair  UBE3A  ubiquitin protein ligase E3A  SLC9A6  solute carrier family 9  member 6
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