Cargando…

AKAP79 Orchestrates a Cyclic AMP Signalosome Adjacent to Orai1 Ca(2+) Channels

To ensure specificity of response, eukaryotic cells often restrict signalling molecules to sub-cellular regions. The Ca(2+) nanodomain is a spatially confined signal that arises near open Ca(2+) channels. Ca(2+) nanodomains near store-operated Orai1 channels stimulate the protein phosphatase calcine...

Descripción completa

Detalles Bibliográficos
Autores principales: Kar, Pulak, Barak, Pradeep, Zerio, Anna, Lin, Yu-Ping, Parekh, Amy J, Watts, Val J, Cooper, Dermot M F, Zaccolo, Manuela, Kramer, Holger, Parekh, Anant B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8394516/
https://www.ncbi.nlm.nih.gov/pubmed/34458850
http://dx.doi.org/10.1093/function/zqab036
_version_ 1783743966576902144
author Kar, Pulak
Barak, Pradeep
Zerio, Anna
Lin, Yu-Ping
Parekh, Amy J
Watts, Val J
Cooper, Dermot M F
Zaccolo, Manuela
Kramer, Holger
Parekh, Anant B
author_facet Kar, Pulak
Barak, Pradeep
Zerio, Anna
Lin, Yu-Ping
Parekh, Amy J
Watts, Val J
Cooper, Dermot M F
Zaccolo, Manuela
Kramer, Holger
Parekh, Anant B
author_sort Kar, Pulak
collection PubMed
description To ensure specificity of response, eukaryotic cells often restrict signalling molecules to sub-cellular regions. The Ca(2+) nanodomain is a spatially confined signal that arises near open Ca(2+) channels. Ca(2+) nanodomains near store-operated Orai1 channels stimulate the protein phosphatase calcineurin, which activates the transcription factor NFAT1, and both enzyme and target are initially attached to the plasma membrane through the scaffolding protein AKAP79. Here, we show that a cAMP signalling nexus also forms adjacent to Orai1. Protein kinase A and phosphodiesterase 4, an enzyme that rapidly breaks down cAMP, both associate with AKAP79 and realign close to Orai1 after stimulation. PCR and mass spectrometry failed to show expression of Ca(2+)-activated adenylyl cyclase 8 in HEK293 cells, whereas the enzyme was observed in neuronal cell lines. FRET and biochemical measurements of bulk cAMP and protein kinase A activity consistently failed to show an increase in adenylyl cyclase activity following even a large rise in cytosolic Ca(2+). Furthermore, expression of AKAP79-CUTie, a cAMP FRET sensor tethered to AKAP79, did not report a rise in cAMP after stimulation, despite AKAP79 association with Orai1. Hence, HEK293 cells do not express functional active Ca(2+)-activated adenylyl cyclases including adenylyl cyclase 8. Our results show that two ancient second messengers are independently generated in nanodomains close to Orai1 Ca(2+) channels.
format Online
Article
Text
id pubmed-8394516
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-83945162021-08-27 AKAP79 Orchestrates a Cyclic AMP Signalosome Adjacent to Orai1 Ca(2+) Channels Kar, Pulak Barak, Pradeep Zerio, Anna Lin, Yu-Ping Parekh, Amy J Watts, Val J Cooper, Dermot M F Zaccolo, Manuela Kramer, Holger Parekh, Anant B Function (Oxf) Original Research To ensure specificity of response, eukaryotic cells often restrict signalling molecules to sub-cellular regions. The Ca(2+) nanodomain is a spatially confined signal that arises near open Ca(2+) channels. Ca(2+) nanodomains near store-operated Orai1 channels stimulate the protein phosphatase calcineurin, which activates the transcription factor NFAT1, and both enzyme and target are initially attached to the plasma membrane through the scaffolding protein AKAP79. Here, we show that a cAMP signalling nexus also forms adjacent to Orai1. Protein kinase A and phosphodiesterase 4, an enzyme that rapidly breaks down cAMP, both associate with AKAP79 and realign close to Orai1 after stimulation. PCR and mass spectrometry failed to show expression of Ca(2+)-activated adenylyl cyclase 8 in HEK293 cells, whereas the enzyme was observed in neuronal cell lines. FRET and biochemical measurements of bulk cAMP and protein kinase A activity consistently failed to show an increase in adenylyl cyclase activity following even a large rise in cytosolic Ca(2+). Furthermore, expression of AKAP79-CUTie, a cAMP FRET sensor tethered to AKAP79, did not report a rise in cAMP after stimulation, despite AKAP79 association with Orai1. Hence, HEK293 cells do not express functional active Ca(2+)-activated adenylyl cyclases including adenylyl cyclase 8. Our results show that two ancient second messengers are independently generated in nanodomains close to Orai1 Ca(2+) channels. Oxford University Press 2021-07-29 /pmc/articles/PMC8394516/ /pubmed/34458850 http://dx.doi.org/10.1093/function/zqab036 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of American Physiological Society. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Kar, Pulak
Barak, Pradeep
Zerio, Anna
Lin, Yu-Ping
Parekh, Amy J
Watts, Val J
Cooper, Dermot M F
Zaccolo, Manuela
Kramer, Holger
Parekh, Anant B
AKAP79 Orchestrates a Cyclic AMP Signalosome Adjacent to Orai1 Ca(2+) Channels
title AKAP79 Orchestrates a Cyclic AMP Signalosome Adjacent to Orai1 Ca(2+) Channels
title_full AKAP79 Orchestrates a Cyclic AMP Signalosome Adjacent to Orai1 Ca(2+) Channels
title_fullStr AKAP79 Orchestrates a Cyclic AMP Signalosome Adjacent to Orai1 Ca(2+) Channels
title_full_unstemmed AKAP79 Orchestrates a Cyclic AMP Signalosome Adjacent to Orai1 Ca(2+) Channels
title_short AKAP79 Orchestrates a Cyclic AMP Signalosome Adjacent to Orai1 Ca(2+) Channels
title_sort akap79 orchestrates a cyclic amp signalosome adjacent to orai1 ca(2+) channels
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8394516/
https://www.ncbi.nlm.nih.gov/pubmed/34458850
http://dx.doi.org/10.1093/function/zqab036
work_keys_str_mv AT karpulak akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT barakpradeep akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT zerioanna akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT linyuping akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT parekhamyj akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT wattsvalj akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT cooperdermotmf akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT zaccolomanuela akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT kramerholger akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels
AT parekhanantb akap79orchestratesacyclicampsignalosomeadjacenttoorai1ca2channels