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A cell-permeable tool for analysing APP intracellular domain function and manipulation of PIKfyve activity

The mechanisms for regulating PIKfyve complex activity are currently emerging. The PIKfyve complex, consisting of the phosphoinositide kinase PIKfyve (also known as FAB1), VAC14 and FIG4, is required for the production of phosphatidylinositol 3,5-bisphosphate [PI(3,5)P(2)]. PIKfyve function is requi...

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Autores principales: Guscott, Benjamin, Balklava, Zita, Safrany, Stephen T., Wassmer, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5293579/
https://www.ncbi.nlm.nih.gov/pubmed/26934981
http://dx.doi.org/10.1042/BSR20160040
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author Guscott, Benjamin
Balklava, Zita
Safrany, Stephen T.
Wassmer, Thomas
author_facet Guscott, Benjamin
Balklava, Zita
Safrany, Stephen T.
Wassmer, Thomas
author_sort Guscott, Benjamin
collection PubMed
description The mechanisms for regulating PIKfyve complex activity are currently emerging. The PIKfyve complex, consisting of the phosphoinositide kinase PIKfyve (also known as FAB1), VAC14 and FIG4, is required for the production of phosphatidylinositol 3,5-bisphosphate [PI(3,5)P(2)]. PIKfyve function is required for homoeostasis of the endo/lysosomal system and is crucially implicated in neuronal function and integrity, as loss of function mutations in the PIKfyve complex lead to neurodegeneration in mouse models and human patients. Our recent work has shown that the intracellular domain of the amyloid precursor protein (APP), a molecule central to the aetiology of Alzheimer's disease binds to VAC14 and enhances PIKfyve function. In the present study, we utilize this recent advance to create an easy-to-use tool for increasing PIKfyve activity in cells. We fused APP intracellular domain (AICD) to the HIV TAT domain, a cell-permeable peptide allowing proteins to penetrate cells. The resultant TAT–AICD fusion protein is cell permeable and triggers an increase in PI(3,5)P(2). Using the PI(3,5)P(2) specific GFP-ML1Nx2 probe, we show that cell-permeable AICD alters PI(3,5)P(2) dynamics. TAT–AICD also provides partial protection from pharmacological inhibition of PIKfyve. All three lines of evidence show that the AICD activates the PIKfyve complex in cells, a finding that is important for our understanding of the mechanism of neurodegeneration in Alzheimer's disease.
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spelling pubmed-52935792017-02-14 A cell-permeable tool for analysing APP intracellular domain function and manipulation of PIKfyve activity Guscott, Benjamin Balklava, Zita Safrany, Stephen T. Wassmer, Thomas Biosci Rep Original Papers The mechanisms for regulating PIKfyve complex activity are currently emerging. The PIKfyve complex, consisting of the phosphoinositide kinase PIKfyve (also known as FAB1), VAC14 and FIG4, is required for the production of phosphatidylinositol 3,5-bisphosphate [PI(3,5)P(2)]. PIKfyve function is required for homoeostasis of the endo/lysosomal system and is crucially implicated in neuronal function and integrity, as loss of function mutations in the PIKfyve complex lead to neurodegeneration in mouse models and human patients. Our recent work has shown that the intracellular domain of the amyloid precursor protein (APP), a molecule central to the aetiology of Alzheimer's disease binds to VAC14 and enhances PIKfyve function. In the present study, we utilize this recent advance to create an easy-to-use tool for increasing PIKfyve activity in cells. We fused APP intracellular domain (AICD) to the HIV TAT domain, a cell-permeable peptide allowing proteins to penetrate cells. The resultant TAT–AICD fusion protein is cell permeable and triggers an increase in PI(3,5)P(2). Using the PI(3,5)P(2) specific GFP-ML1Nx2 probe, we show that cell-permeable AICD alters PI(3,5)P(2) dynamics. TAT–AICD also provides partial protection from pharmacological inhibition of PIKfyve. All three lines of evidence show that the AICD activates the PIKfyve complex in cells, a finding that is important for our understanding of the mechanism of neurodegeneration in Alzheimer's disease. Portland Press Ltd. 2016-04-15 /pmc/articles/PMC5293579/ /pubmed/26934981 http://dx.doi.org/10.1042/BSR20160040 Text en © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution Licence 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Original Papers
Guscott, Benjamin
Balklava, Zita
Safrany, Stephen T.
Wassmer, Thomas
A cell-permeable tool for analysing APP intracellular domain function and manipulation of PIKfyve activity
title A cell-permeable tool for analysing APP intracellular domain function and manipulation of PIKfyve activity
title_full A cell-permeable tool for analysing APP intracellular domain function and manipulation of PIKfyve activity
title_fullStr A cell-permeable tool for analysing APP intracellular domain function and manipulation of PIKfyve activity
title_full_unstemmed A cell-permeable tool for analysing APP intracellular domain function and manipulation of PIKfyve activity
title_short A cell-permeable tool for analysing APP intracellular domain function and manipulation of PIKfyve activity
title_sort cell-permeable tool for analysing app intracellular domain function and manipulation of pikfyve activity
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5293579/
https://www.ncbi.nlm.nih.gov/pubmed/26934981
http://dx.doi.org/10.1042/BSR20160040
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