Disulfide-activated protein kinase G Iα regulates cardiac diastolic relaxation and fine-tunes the Frank–Starling response
The stroke volume of the heart increases in response to an increase in the blood volume filling the heart. Here the authors reveal that this coordinated process is mediated in part by oxidative activation of the protein kinase G Iα, which phosphorylates phospholamban to enhance diastolic relaxation...
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Nature Portfolio
2016
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oai:doaj.org-article:03ace94ba067478fa8463d2ab1ace41b2021-12-02T15:34:59ZDisulfide-activated protein kinase G Iα regulates cardiac diastolic relaxation and fine-tunes the Frank–Starling response10.1038/ncomms131872041-1723https://doaj.org/article/03ace94ba067478fa8463d2ab1ace41b2016-10-01T00:00:00Zhttps://doi.org/10.1038/ncomms13187https://doaj.org/toc/2041-1723The stroke volume of the heart increases in response to an increase in the blood volume filling the heart. Here the authors reveal that this coordinated process is mediated in part by oxidative activation of the protein kinase G Iα, which phosphorylates phospholamban to enhance diastolic relaxation in mice.Jenna ScotcherOleksandra PrysyazhnaAndrii BoguslavskyiKornel KistamasNatasha HadgraftEva D. MartinJenny WorthingtonOlena RudykPedro Rodriguez CutillasFriederike CuelloMichael J. ShattockMichael S. MarberMaria R. ConteAdam GreensteinDavid J. GreensmithLuigi VenetucciJohn F. TimmsPhilip EatonNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-11 (2016) |
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Science Q Jenna Scotcher Oleksandra Prysyazhna Andrii Boguslavskyi Kornel Kistamas Natasha Hadgraft Eva D. Martin Jenny Worthington Olena Rudyk Pedro Rodriguez Cutillas Friederike Cuello Michael J. Shattock Michael S. Marber Maria R. Conte Adam Greenstein David J. Greensmith Luigi Venetucci John F. Timms Philip Eaton Disulfide-activated protein kinase G Iα regulates cardiac diastolic relaxation and fine-tunes the Frank–Starling response |
description |
The stroke volume of the heart increases in response to an increase in the blood volume filling the heart. Here the authors reveal that this coordinated process is mediated in part by oxidative activation of the protein kinase G Iα, which phosphorylates phospholamban to enhance diastolic relaxation in mice. |
format |
article |
author |
Jenna Scotcher Oleksandra Prysyazhna Andrii Boguslavskyi Kornel Kistamas Natasha Hadgraft Eva D. Martin Jenny Worthington Olena Rudyk Pedro Rodriguez Cutillas Friederike Cuello Michael J. Shattock Michael S. Marber Maria R. Conte Adam Greenstein David J. Greensmith Luigi Venetucci John F. Timms Philip Eaton |
author_facet |
Jenna Scotcher Oleksandra Prysyazhna Andrii Boguslavskyi Kornel Kistamas Natasha Hadgraft Eva D. Martin Jenny Worthington Olena Rudyk Pedro Rodriguez Cutillas Friederike Cuello Michael J. Shattock Michael S. Marber Maria R. Conte Adam Greenstein David J. Greensmith Luigi Venetucci John F. Timms Philip Eaton |
author_sort |
Jenna Scotcher |
title |
Disulfide-activated protein kinase G Iα regulates cardiac diastolic relaxation and fine-tunes the Frank–Starling response |
title_short |
Disulfide-activated protein kinase G Iα regulates cardiac diastolic relaxation and fine-tunes the Frank–Starling response |
title_full |
Disulfide-activated protein kinase G Iα regulates cardiac diastolic relaxation and fine-tunes the Frank–Starling response |
title_fullStr |
Disulfide-activated protein kinase G Iα regulates cardiac diastolic relaxation and fine-tunes the Frank–Starling response |
title_full_unstemmed |
Disulfide-activated protein kinase G Iα regulates cardiac diastolic relaxation and fine-tunes the Frank–Starling response |
title_sort |
disulfide-activated protein kinase g iα regulates cardiac diastolic relaxation and fine-tunes the frank–starling response |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/03ace94ba067478fa8463d2ab1ace41b |
work_keys_str_mv |
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