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Blockage of Kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through RhoA signaling

Background: Activation of macrophages and infiltration are key events in acute liver injury (ALI). Kv1.3 plays an important role in regulating immunologic functions of macrophages and is extensively recognized as a potential ion channel for immunological diseases. Objective: We hypothesized that blo...

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Autores principales: Wu, Baoming, Liu, Jun-da, Bian, Erbao, Hu, Wei, Huang, Cheng, Meng, Xiaoming, Zhang, Lei, Lv, Xiongwen, Li, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6990916/
https://www.ncbi.nlm.nih.gov/pubmed/32025214
http://dx.doi.org/10.7150/ijbs.38950
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author Wu, Baoming
Liu, Jun-da
Bian, Erbao
Hu, Wei
Huang, Cheng
Meng, Xiaoming
Zhang, Lei
Lv, Xiongwen
Li, Jun
author_facet Wu, Baoming
Liu, Jun-da
Bian, Erbao
Hu, Wei
Huang, Cheng
Meng, Xiaoming
Zhang, Lei
Lv, Xiongwen
Li, Jun
author_sort Wu, Baoming
collection PubMed
description Background: Activation of macrophages and infiltration are key events in acute liver injury (ALI). Kv1.3 plays an important role in regulating immunologic functions of macrophages and is extensively recognized as a potential ion channel for immunological diseases. Objective: We hypothesized that blockage of Kv1.3 may influence ALI by inhibiting macrophages infiltration in damaged liver tissues. Methods: Margatoxin was administered into the peritoneal cavity of ALI mice. The impact of this treatment on ALI and macrophage migration in vivo and in vitro was determined using immunohistochemistry, transwell migration, and wound healing assays. Results: MgTX treatment alleviated ALI in mice, as evidenced by reduced macrophage infiltration in liver tissues and lower serum levels of liver ALT and AST. RNA-seq profiling analysis showed that the most obvious change by MgTX treatment was downregulation of δ-catenin, a protein known to be associated with macrophage migration. The effect of MgTX on macrophage migration and involvement of δ-catenin was confirmed by transwell and wound healing assays. Overexpression of δ-catenin in RAW264.7 cells promoted migration, an event that was suppressed upon silencing of δ-catenin. Mechanistically, the expression of RhoA was regulated by the overexpression or knockdown of δ-catenin. Conclusion: These findings suggest a role for blockage of Kv1.3 channel in macrophage migration and reveal a new target in the treatment of ALI.
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spelling pubmed-69909162020-02-05 Blockage of Kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through RhoA signaling Wu, Baoming Liu, Jun-da Bian, Erbao Hu, Wei Huang, Cheng Meng, Xiaoming Zhang, Lei Lv, Xiongwen Li, Jun Int J Biol Sci Research Paper Background: Activation of macrophages and infiltration are key events in acute liver injury (ALI). Kv1.3 plays an important role in regulating immunologic functions of macrophages and is extensively recognized as a potential ion channel for immunological diseases. Objective: We hypothesized that blockage of Kv1.3 may influence ALI by inhibiting macrophages infiltration in damaged liver tissues. Methods: Margatoxin was administered into the peritoneal cavity of ALI mice. The impact of this treatment on ALI and macrophage migration in vivo and in vitro was determined using immunohistochemistry, transwell migration, and wound healing assays. Results: MgTX treatment alleviated ALI in mice, as evidenced by reduced macrophage infiltration in liver tissues and lower serum levels of liver ALT and AST. RNA-seq profiling analysis showed that the most obvious change by MgTX treatment was downregulation of δ-catenin, a protein known to be associated with macrophage migration. The effect of MgTX on macrophage migration and involvement of δ-catenin was confirmed by transwell and wound healing assays. Overexpression of δ-catenin in RAW264.7 cells promoted migration, an event that was suppressed upon silencing of δ-catenin. Mechanistically, the expression of RhoA was regulated by the overexpression or knockdown of δ-catenin. Conclusion: These findings suggest a role for blockage of Kv1.3 channel in macrophage migration and reveal a new target in the treatment of ALI. Ivyspring International Publisher 2020-01-14 /pmc/articles/PMC6990916/ /pubmed/32025214 http://dx.doi.org/10.7150/ijbs.38950 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Wu, Baoming
Liu, Jun-da
Bian, Erbao
Hu, Wei
Huang, Cheng
Meng, Xiaoming
Zhang, Lei
Lv, Xiongwen
Li, Jun
Blockage of Kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through RhoA signaling
title Blockage of Kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through RhoA signaling
title_full Blockage of Kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through RhoA signaling
title_fullStr Blockage of Kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through RhoA signaling
title_full_unstemmed Blockage of Kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through RhoA signaling
title_short Blockage of Kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through RhoA signaling
title_sort blockage of kv1.3 regulates macrophage migration in acute liver injury by targeting δ-catenin through rhoa signaling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6990916/
https://www.ncbi.nlm.nih.gov/pubmed/32025214
http://dx.doi.org/10.7150/ijbs.38950
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