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A novel reporter for real-time, quantitative imaging of AKT-directed K63-poly-ubiquitination in living cells

Post-translational K63-linked poly-ubiquitination of AKT is required for its membrane recruitment and phosphorylation dependent activation in response to growth-factor stimulation. Current assays for target specific poly-ubiquitination involve cumbersome enzymatic preparations and semi-quantitative...

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Autores principales: Nyati, Shyam, Chaudhry, Nauman, Chatur, Areeb, Gregg, Brandon S., Kimmel, Lauren, Khare, Dheeraj, Basrur, Venkatesha, Ray, Dipankar, Rehemtulla, Alnawaz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5834254/
https://www.ncbi.nlm.nih.gov/pubmed/29541398
http://dx.doi.org/10.18632/oncotarget.24323
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author Nyati, Shyam
Chaudhry, Nauman
Chatur, Areeb
Gregg, Brandon S.
Kimmel, Lauren
Khare, Dheeraj
Basrur, Venkatesha
Ray, Dipankar
Rehemtulla, Alnawaz
author_facet Nyati, Shyam
Chaudhry, Nauman
Chatur, Areeb
Gregg, Brandon S.
Kimmel, Lauren
Khare, Dheeraj
Basrur, Venkatesha
Ray, Dipankar
Rehemtulla, Alnawaz
author_sort Nyati, Shyam
collection PubMed
description Post-translational K63-linked poly-ubiquitination of AKT is required for its membrane recruitment and phosphorylation dependent activation in response to growth-factor stimulation. Current assays for target specific poly-ubiquitination involve cumbersome enzymatic preparations and semi-quantitative readouts. We have engineered a reporter that can quantitatively and in a target specific manner report on AKT-directed K63-polyubiquitination (K63UbR) in live cells. The reporter constitutes the AKT-derived poly-ubiquitination substrate peptide, a K63 poly-ubiquitin binding domain (UBD) as well as the split luciferase protein complementation domains. In cells, wherein signaling events upstream of AKT are activated (e.g. either EGFR or IGFR), poly-ubiquitination of the reporter leads to a stearic constraint that prevents luciferase complementation. However, upon inhibition of growth factor receptor signaling, loss of AKT poly-ubiquitination results in a decrease in interaction between the target peptide and the UBD, allowing for reconstitution of the split luciferase domains and therefore increased bioluminescence in a quantitative and dynamic manner. The K63UbR was confirmed to be suitable for high throughput screen (HTS), thus providing an excellent tool for small molecule or siRNA based HTS to discover new inhibitors or identify novel regulators of this key signaling node. Furthermore, the K63UbR platform could be adapted for non-invasive monitoring of additional target specific K63-polyubiquitination events in live cells.
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spelling pubmed-58342542018-03-14 A novel reporter for real-time, quantitative imaging of AKT-directed K63-poly-ubiquitination in living cells Nyati, Shyam Chaudhry, Nauman Chatur, Areeb Gregg, Brandon S. Kimmel, Lauren Khare, Dheeraj Basrur, Venkatesha Ray, Dipankar Rehemtulla, Alnawaz Oncotarget Research Paper Post-translational K63-linked poly-ubiquitination of AKT is required for its membrane recruitment and phosphorylation dependent activation in response to growth-factor stimulation. Current assays for target specific poly-ubiquitination involve cumbersome enzymatic preparations and semi-quantitative readouts. We have engineered a reporter that can quantitatively and in a target specific manner report on AKT-directed K63-polyubiquitination (K63UbR) in live cells. The reporter constitutes the AKT-derived poly-ubiquitination substrate peptide, a K63 poly-ubiquitin binding domain (UBD) as well as the split luciferase protein complementation domains. In cells, wherein signaling events upstream of AKT are activated (e.g. either EGFR or IGFR), poly-ubiquitination of the reporter leads to a stearic constraint that prevents luciferase complementation. However, upon inhibition of growth factor receptor signaling, loss of AKT poly-ubiquitination results in a decrease in interaction between the target peptide and the UBD, allowing for reconstitution of the split luciferase domains and therefore increased bioluminescence in a quantitative and dynamic manner. The K63UbR was confirmed to be suitable for high throughput screen (HTS), thus providing an excellent tool for small molecule or siRNA based HTS to discover new inhibitors or identify novel regulators of this key signaling node. Furthermore, the K63UbR platform could be adapted for non-invasive monitoring of additional target specific K63-polyubiquitination events in live cells. Impact Journals LLC 2018-01-25 /pmc/articles/PMC5834254/ /pubmed/29541398 http://dx.doi.org/10.18632/oncotarget.24323 Text en Copyright: © 2018 Nyati et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Nyati, Shyam
Chaudhry, Nauman
Chatur, Areeb
Gregg, Brandon S.
Kimmel, Lauren
Khare, Dheeraj
Basrur, Venkatesha
Ray, Dipankar
Rehemtulla, Alnawaz
A novel reporter for real-time, quantitative imaging of AKT-directed K63-poly-ubiquitination in living cells
title A novel reporter for real-time, quantitative imaging of AKT-directed K63-poly-ubiquitination in living cells
title_full A novel reporter for real-time, quantitative imaging of AKT-directed K63-poly-ubiquitination in living cells
title_fullStr A novel reporter for real-time, quantitative imaging of AKT-directed K63-poly-ubiquitination in living cells
title_full_unstemmed A novel reporter for real-time, quantitative imaging of AKT-directed K63-poly-ubiquitination in living cells
title_short A novel reporter for real-time, quantitative imaging of AKT-directed K63-poly-ubiquitination in living cells
title_sort novel reporter for real-time, quantitative imaging of akt-directed k63-poly-ubiquitination in living cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5834254/
https://www.ncbi.nlm.nih.gov/pubmed/29541398
http://dx.doi.org/10.18632/oncotarget.24323
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