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The endosomal trafficking regulator LITAF controls the cardiac Nav1.5 channel via the ubiquitin ligase NEDD4-2

The QT interval is a recording of cardiac electrical activity. Previous genome-wide association studies identified genetic variants that modify the QT interval upstream of LITAF (lipopolysaccharide-induced tumor necrosis factor-α factor), a protein encoding a regulator of endosomal trafficking. Howe...

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Autores principales: Turan, Nilüfer N., Moshal, Karni S., Roder, Karim, Baggett, Brett C., Kabakov, Anatoli Y., Dhakal, Saroj, Teramoto, Ryota, Chiang, David Yi-Eng, Zhong, Mingwang, Xie, An, Lu, Yichun, Dudley, Samuel C., MacRae, Calum A., Karma, Alain, Koren, Gideon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7939464/
https://www.ncbi.nlm.nih.gov/pubmed/33093176
http://dx.doi.org/10.1074/jbc.RA120.015216
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author Turan, Nilüfer N.
Moshal, Karni S.
Roder, Karim
Baggett, Brett C.
Kabakov, Anatoli Y.
Dhakal, Saroj
Teramoto, Ryota
Chiang, David Yi-Eng
Zhong, Mingwang
Xie, An
Lu, Yichun
Dudley, Samuel C.
MacRae, Calum A.
Karma, Alain
Koren, Gideon
author_facet Turan, Nilüfer N.
Moshal, Karni S.
Roder, Karim
Baggett, Brett C.
Kabakov, Anatoli Y.
Dhakal, Saroj
Teramoto, Ryota
Chiang, David Yi-Eng
Zhong, Mingwang
Xie, An
Lu, Yichun
Dudley, Samuel C.
MacRae, Calum A.
Karma, Alain
Koren, Gideon
author_sort Turan, Nilüfer N.
collection PubMed
description The QT interval is a recording of cardiac electrical activity. Previous genome-wide association studies identified genetic variants that modify the QT interval upstream of LITAF (lipopolysaccharide-induced tumor necrosis factor-α factor), a protein encoding a regulator of endosomal trafficking. However, it was not clear how LITAF might impact cardiac excitation. We investigated the effect of LITAF on the voltage-gated sodium channel Nav1.5, which is critical for cardiac depolarization. We show that overexpressed LITAF resulted in a significant increase in the density of Nav1.5-generated voltage-gated sodium current I(Na) and Nav1.5 surface protein levels in rabbit cardiomyocytes and in HEK cells stably expressing Nav1.5. Proximity ligation assays showed co-localization of endogenous LITAF and Nav1.5 in cardiomyocytes, whereas co-immunoprecipitations confirmed they are in the same complex when overexpressed in HEK cells. In vitro data suggest that LITAF interacts with the ubiquitin ligase NEDD4-2, a regulator of Nav1.5. LITAF overexpression down-regulated NEDD4-2 in cardiomyocytes and HEK cells. In HEK cells, LITAF increased ubiquitination and proteasomal degradation of co-expressed NEDD4-2 and significantly blunted the negative effect of NEDD4-2 on I(Na). We conclude that LITAF controls cardiac excitability by promoting degradation of NEDD4-2, which is essential for removal of surface Nav1.5. LITAF-knockout zebrafish showed increased variation in and a nonsignificant 15% prolongation of action potential duration. Computer simulations using a rabbit-cardiomyocyte model demonstrated that changes in Ca(2+) and Na(+) homeostasis are responsible for the surprisingly modest action potential duration shortening. These computational data thus corroborate findings from several genome-wide association studies that associated LITAF with QT interval variation.
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spelling pubmed-79394642021-06-08 The endosomal trafficking regulator LITAF controls the cardiac Nav1.5 channel via the ubiquitin ligase NEDD4-2 Turan, Nilüfer N. Moshal, Karni S. Roder, Karim Baggett, Brett C. Kabakov, Anatoli Y. Dhakal, Saroj Teramoto, Ryota Chiang, David Yi-Eng Zhong, Mingwang Xie, An Lu, Yichun Dudley, Samuel C. MacRae, Calum A. Karma, Alain Koren, Gideon J Biol Chem Protein Synthesis and Degradation The QT interval is a recording of cardiac electrical activity. Previous genome-wide association studies identified genetic variants that modify the QT interval upstream of LITAF (lipopolysaccharide-induced tumor necrosis factor-α factor), a protein encoding a regulator of endosomal trafficking. However, it was not clear how LITAF might impact cardiac excitation. We investigated the effect of LITAF on the voltage-gated sodium channel Nav1.5, which is critical for cardiac depolarization. We show that overexpressed LITAF resulted in a significant increase in the density of Nav1.5-generated voltage-gated sodium current I(Na) and Nav1.5 surface protein levels in rabbit cardiomyocytes and in HEK cells stably expressing Nav1.5. Proximity ligation assays showed co-localization of endogenous LITAF and Nav1.5 in cardiomyocytes, whereas co-immunoprecipitations confirmed they are in the same complex when overexpressed in HEK cells. In vitro data suggest that LITAF interacts with the ubiquitin ligase NEDD4-2, a regulator of Nav1.5. LITAF overexpression down-regulated NEDD4-2 in cardiomyocytes and HEK cells. In HEK cells, LITAF increased ubiquitination and proteasomal degradation of co-expressed NEDD4-2 and significantly blunted the negative effect of NEDD4-2 on I(Na). We conclude that LITAF controls cardiac excitability by promoting degradation of NEDD4-2, which is essential for removal of surface Nav1.5. LITAF-knockout zebrafish showed increased variation in and a nonsignificant 15% prolongation of action potential duration. Computer simulations using a rabbit-cardiomyocyte model demonstrated that changes in Ca(2+) and Na(+) homeostasis are responsible for the surprisingly modest action potential duration shortening. These computational data thus corroborate findings from several genome-wide association studies that associated LITAF with QT interval variation. American Society for Biochemistry and Molecular Biology 2021-01-13 /pmc/articles/PMC7939464/ /pubmed/33093176 http://dx.doi.org/10.1074/jbc.RA120.015216 Text en © 2020 © 2020 Turan et al. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Protein Synthesis and Degradation
Turan, Nilüfer N.
Moshal, Karni S.
Roder, Karim
Baggett, Brett C.
Kabakov, Anatoli Y.
Dhakal, Saroj
Teramoto, Ryota
Chiang, David Yi-Eng
Zhong, Mingwang
Xie, An
Lu, Yichun
Dudley, Samuel C.
MacRae, Calum A.
Karma, Alain
Koren, Gideon
The endosomal trafficking regulator LITAF controls the cardiac Nav1.5 channel via the ubiquitin ligase NEDD4-2
title The endosomal trafficking regulator LITAF controls the cardiac Nav1.5 channel via the ubiquitin ligase NEDD4-2
title_full The endosomal trafficking regulator LITAF controls the cardiac Nav1.5 channel via the ubiquitin ligase NEDD4-2
title_fullStr The endosomal trafficking regulator LITAF controls the cardiac Nav1.5 channel via the ubiquitin ligase NEDD4-2
title_full_unstemmed The endosomal trafficking regulator LITAF controls the cardiac Nav1.5 channel via the ubiquitin ligase NEDD4-2
title_short The endosomal trafficking regulator LITAF controls the cardiac Nav1.5 channel via the ubiquitin ligase NEDD4-2
title_sort endosomal trafficking regulator litaf controls the cardiac nav1.5 channel via the ubiquitin ligase nedd4-2
topic Protein Synthesis and Degradation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7939464/
https://www.ncbi.nlm.nih.gov/pubmed/33093176
http://dx.doi.org/10.1074/jbc.RA120.015216
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