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Noncanonical function of long myosin light chain kinase in increasing ER‐PM junctions and augmentation of SOCE

Increased endothelial permeability leads to excessive exudation of plasma proteins and leukocytes in the interstitium, which characterizes several vascular diseases including acute lung injury. The myosin light chain kinase long (MYLK‐L) isoform is canonically known to regulate the endothelial perme...

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Autores principales: Srivastava, Nityanand, Tauseef, Mohammad, Amin, Ruhul, Joshi, Bhagwati, Joshi, Jagdish Chandra, Kini, Vidisha, Klomp, Jennifer, Li, Weenan, Knezevic, Nebojsa, Barbera, Nicolas, Siddiqui, Shahid, Obukhov, Alexander, Karginov, Andrei, Levitan, Irena, Komarova, Yulia, Mehta, Dolly
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7496663/
https://www.ncbi.nlm.nih.gov/pubmed/32772419
http://dx.doi.org/10.1096/fj.201902462RR
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author Srivastava, Nityanand
Tauseef, Mohammad
Amin, Ruhul
Joshi, Bhagwati
Joshi, Jagdish Chandra
Kini, Vidisha
Klomp, Jennifer
Li, Weenan
Knezevic, Nebojsa
Barbera, Nicolas
Siddiqui, Shahid
Obukhov, Alexander
Karginov, Andrei
Levitan, Irena
Komarova, Yulia
Mehta, Dolly
author_facet Srivastava, Nityanand
Tauseef, Mohammad
Amin, Ruhul
Joshi, Bhagwati
Joshi, Jagdish Chandra
Kini, Vidisha
Klomp, Jennifer
Li, Weenan
Knezevic, Nebojsa
Barbera, Nicolas
Siddiqui, Shahid
Obukhov, Alexander
Karginov, Andrei
Levitan, Irena
Komarova, Yulia
Mehta, Dolly
author_sort Srivastava, Nityanand
collection PubMed
description Increased endothelial permeability leads to excessive exudation of plasma proteins and leukocytes in the interstitium, which characterizes several vascular diseases including acute lung injury. The myosin light chain kinase long (MYLK‐L) isoform is canonically known to regulate the endothelial permeability by phosphorylating myosin light chain (MLC‐P). Compared to the short MYLK isoform, MYLK‐L contains an additional stretch of ~919 amino acid at the N‐terminus of unknown function. We show that thapsigargin and thrombin‐induced SOCE was markedly reduced in Mylk‐L (–/–) endothelial cells (EC) or MYLK‐L‐depleted human EC. These agonists also failed to increase endothelial permeability in MYLK‐L‐depleted EC and Mylk‐L (–/–) lungs, thus demonstrating the novel role of MYLK‐L‐induced SOCE in increasing vascular permeability. MYLK‐L augmented SOCE by increasing endoplasmic reticulum (ER)‐plasma membrane (PM) junctions and STIM1 translocation to these junctions. Transduction of N‐MYLK domain (amino acids 1‐919 devoid of catalytic activity) into Mylk‐L (–/–) EC rescued SOCE to the level seen in control EC in a STIM1‐dependent manner. N‐MYLK‐induced SOCE augmented endothelial permeability without MLC‐P via an actin‐binding motif, DVRGLL. Liposomal‐mediated delivery of N‐MYLK mutant but not ∆DVRGLL‐N‐MYLK mutant in Mylk‐L (–/–) mice rescued vascular permeability increase in response to endotoxin, indicating that targeting of DVRGLL motif within MYLK‐L may limit SOCE‐induced vascular hyperpermeability.
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spelling pubmed-74966632020-09-25 Noncanonical function of long myosin light chain kinase in increasing ER‐PM junctions and augmentation of SOCE Srivastava, Nityanand Tauseef, Mohammad Amin, Ruhul Joshi, Bhagwati Joshi, Jagdish Chandra Kini, Vidisha Klomp, Jennifer Li, Weenan Knezevic, Nebojsa Barbera, Nicolas Siddiqui, Shahid Obukhov, Alexander Karginov, Andrei Levitan, Irena Komarova, Yulia Mehta, Dolly FASEB J Research Articles Increased endothelial permeability leads to excessive exudation of plasma proteins and leukocytes in the interstitium, which characterizes several vascular diseases including acute lung injury. The myosin light chain kinase long (MYLK‐L) isoform is canonically known to regulate the endothelial permeability by phosphorylating myosin light chain (MLC‐P). Compared to the short MYLK isoform, MYLK‐L contains an additional stretch of ~919 amino acid at the N‐terminus of unknown function. We show that thapsigargin and thrombin‐induced SOCE was markedly reduced in Mylk‐L (–/–) endothelial cells (EC) or MYLK‐L‐depleted human EC. These agonists also failed to increase endothelial permeability in MYLK‐L‐depleted EC and Mylk‐L (–/–) lungs, thus demonstrating the novel role of MYLK‐L‐induced SOCE in increasing vascular permeability. MYLK‐L augmented SOCE by increasing endoplasmic reticulum (ER)‐plasma membrane (PM) junctions and STIM1 translocation to these junctions. Transduction of N‐MYLK domain (amino acids 1‐919 devoid of catalytic activity) into Mylk‐L (–/–) EC rescued SOCE to the level seen in control EC in a STIM1‐dependent manner. N‐MYLK‐induced SOCE augmented endothelial permeability without MLC‐P via an actin‐binding motif, DVRGLL. Liposomal‐mediated delivery of N‐MYLK mutant but not ∆DVRGLL‐N‐MYLK mutant in Mylk‐L (–/–) mice rescued vascular permeability increase in response to endotoxin, indicating that targeting of DVRGLL motif within MYLK‐L may limit SOCE‐induced vascular hyperpermeability. John Wiley and Sons Inc. 2020-08-09 2020-09 /pmc/articles/PMC7496663/ /pubmed/32772419 http://dx.doi.org/10.1096/fj.201902462RR Text en © 2020 The Authors. The FASEB Journal published by Wiley Periodicals LLC on behalf of Federation of American Societies for Experimental Biology This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Srivastava, Nityanand
Tauseef, Mohammad
Amin, Ruhul
Joshi, Bhagwati
Joshi, Jagdish Chandra
Kini, Vidisha
Klomp, Jennifer
Li, Weenan
Knezevic, Nebojsa
Barbera, Nicolas
Siddiqui, Shahid
Obukhov, Alexander
Karginov, Andrei
Levitan, Irena
Komarova, Yulia
Mehta, Dolly
Noncanonical function of long myosin light chain kinase in increasing ER‐PM junctions and augmentation of SOCE
title Noncanonical function of long myosin light chain kinase in increasing ER‐PM junctions and augmentation of SOCE
title_full Noncanonical function of long myosin light chain kinase in increasing ER‐PM junctions and augmentation of SOCE
title_fullStr Noncanonical function of long myosin light chain kinase in increasing ER‐PM junctions and augmentation of SOCE
title_full_unstemmed Noncanonical function of long myosin light chain kinase in increasing ER‐PM junctions and augmentation of SOCE
title_short Noncanonical function of long myosin light chain kinase in increasing ER‐PM junctions and augmentation of SOCE
title_sort noncanonical function of long myosin light chain kinase in increasing er‐pm junctions and augmentation of soce
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7496663/
https://www.ncbi.nlm.nih.gov/pubmed/32772419
http://dx.doi.org/10.1096/fj.201902462RR
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