Phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity.
Phosphorylation has been shown to have a significant impact on expanded huntingtin-mediated cellular toxicity. Several phosphorylation sites have been identified on the huntingtin (Htt) protein. To find new potential therapeutic targets for Huntington's Disease (HD), we used mass spectrometry t...
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doaj-a760bb87c312433792c9a180b917b4e72020-11-24T22:00:30ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0192e8828410.1371/journal.pone.0088284Phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity.Erin E WatkinNicolas ArbezElaine Waldron-RobyRobert O'MeallyTamara RatovitskiRobert N ColeChristopher A RossPhosphorylation has been shown to have a significant impact on expanded huntingtin-mediated cellular toxicity. Several phosphorylation sites have been identified on the huntingtin (Htt) protein. To find new potential therapeutic targets for Huntington's Disease (HD), we used mass spectrometry to identify novel phosphorylation sites on N-terminal Htt, expressed in HEK293 cells. Using site-directed mutagenesis we introduced alterations of phosphorylation sites in a N586 Htt construct containing 82 polyglutamine repeats. The effects of these alterations on expanded Htt toxicity were evaluated in primary neurons using a nuclear condensation assay and a direct time-lapse imaging of neuronal death. As a result of these studies, we identified several novel phosphorylation sites, validated several known sites, and discovered one phospho-null alteration, S116A, that had a protective effect against expanded polyglutamine-mediated cellular toxicity. The results suggest that S116 is a potential therapeutic target, and indicate that our screening method is useful for identifying candidate phosphorylation sites.http://europepmc.org/articles/PMC3914950?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Erin E Watkin Nicolas Arbez Elaine Waldron-Roby Robert O'Meally Tamara Ratovitski Robert N Cole Christopher A Ross |
spellingShingle |
Erin E Watkin Nicolas Arbez Elaine Waldron-Roby Robert O'Meally Tamara Ratovitski Robert N Cole Christopher A Ross Phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity. PLoS ONE |
author_facet |
Erin E Watkin Nicolas Arbez Elaine Waldron-Roby Robert O'Meally Tamara Ratovitski Robert N Cole Christopher A Ross |
author_sort |
Erin E Watkin |
title |
Phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity. |
title_short |
Phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity. |
title_full |
Phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity. |
title_fullStr |
Phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity. |
title_full_unstemmed |
Phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity. |
title_sort |
phosphorylation of mutant huntingtin at serine 116 modulates neuronal toxicity. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2014-01-01 |
description |
Phosphorylation has been shown to have a significant impact on expanded huntingtin-mediated cellular toxicity. Several phosphorylation sites have been identified on the huntingtin (Htt) protein. To find new potential therapeutic targets for Huntington's Disease (HD), we used mass spectrometry to identify novel phosphorylation sites on N-terminal Htt, expressed in HEK293 cells. Using site-directed mutagenesis we introduced alterations of phosphorylation sites in a N586 Htt construct containing 82 polyglutamine repeats. The effects of these alterations on expanded Htt toxicity were evaluated in primary neurons using a nuclear condensation assay and a direct time-lapse imaging of neuronal death. As a result of these studies, we identified several novel phosphorylation sites, validated several known sites, and discovered one phospho-null alteration, S116A, that had a protective effect against expanded polyglutamine-mediated cellular toxicity. The results suggest that S116 is a potential therapeutic target, and indicate that our screening method is useful for identifying candidate phosphorylation sites. |
url |
http://europepmc.org/articles/PMC3914950?pdf=render |
work_keys_str_mv |
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