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KANK2 Links αVβ5 Focal Adhesions to Microtubules and Regulates Sensitivity to Microtubule Poisons and Cell Migration

Integrins are heterodimeric glycoproteins that bind cells to extracellular matrix. Upon integrin clustering, multimolecular integrin adhesion complexes (IACs) are formed, creating links to the cell cytoskeleton. We have previously observed decreased cell migration and increased sensitivity to microt...

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Autores principales: Paradžik, Mladen, Humphries, Jonathan D., Stojanović, Nikolina, Nestić, Davor, Majhen, Dragomira, Dekanić, Ana, Samaržija, Ivana, Sedda, Delphine, Weber, Igor, Humphries, Martin J., Ambriović-Ristov, Andreja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7063070/
https://www.ncbi.nlm.nih.gov/pubmed/32195252
http://dx.doi.org/10.3389/fcell.2020.00125
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author Paradžik, Mladen
Humphries, Jonathan D.
Stojanović, Nikolina
Nestić, Davor
Majhen, Dragomira
Dekanić, Ana
Samaržija, Ivana
Sedda, Delphine
Weber, Igor
Humphries, Martin J.
Ambriović-Ristov, Andreja
author_facet Paradžik, Mladen
Humphries, Jonathan D.
Stojanović, Nikolina
Nestić, Davor
Majhen, Dragomira
Dekanić, Ana
Samaržija, Ivana
Sedda, Delphine
Weber, Igor
Humphries, Martin J.
Ambriović-Ristov, Andreja
author_sort Paradžik, Mladen
collection PubMed
description Integrins are heterodimeric glycoproteins that bind cells to extracellular matrix. Upon integrin clustering, multimolecular integrin adhesion complexes (IACs) are formed, creating links to the cell cytoskeleton. We have previously observed decreased cell migration and increased sensitivity to microtubule (MT) poisons, paclitaxel and vincristine, in the melanoma cell line MDA-MB-435S upon transfection with integrin αV-specific siRNA, suggesting a link between adhesion and drug sensitivity. To elucidate the underlying mechanism, we determined αV-dependent changes in IAC composition. Using mass spectrometry (MS)-based proteomics, we analyzed the components of isolated IACs of MDA-MB-435S cells and two MDA-MB-435S-derived integrin αV-specific shRNA-expressing cell clones with decreased expression of integrin αV. MS analysis showed that cells preferentially use integrin αVβ5 for the formation of IACs. The differential analysis between MDA-MB-435S cells and clones with decreased expression of integrin αV identified key components of integrin αVβ5 adhesion complexes as talins 1 and 2, α-actinins 1 and 4, filamins A and B, plectin and vinculin. The data also revealed decreased levels of several components of the cortical microtubule stabilization complex, which recruits MTs to adhesion sites (notably liprins α and β, ELKS, LL5β, MACF1, KANK1, and KANK2), following αV knockdown. KANK2 knockdown in MDA-MB-435S cells mimicked the effect of integrin αV knockdown and resulted in increased sensitivity to MT poisons and decreased migration. Taken together, we conclude that KANK2 is a key molecule linking integrin αVβ5 IACs to MTs, and enabling the actin-MT crosstalk that is important for both sensitivity to MT poisons and cell migration.
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spelling pubmed-70630702020-03-19 KANK2 Links αVβ5 Focal Adhesions to Microtubules and Regulates Sensitivity to Microtubule Poisons and Cell Migration Paradžik, Mladen Humphries, Jonathan D. Stojanović, Nikolina Nestić, Davor Majhen, Dragomira Dekanić, Ana Samaržija, Ivana Sedda, Delphine Weber, Igor Humphries, Martin J. Ambriović-Ristov, Andreja Front Cell Dev Biol Cell and Developmental Biology Integrins are heterodimeric glycoproteins that bind cells to extracellular matrix. Upon integrin clustering, multimolecular integrin adhesion complexes (IACs) are formed, creating links to the cell cytoskeleton. We have previously observed decreased cell migration and increased sensitivity to microtubule (MT) poisons, paclitaxel and vincristine, in the melanoma cell line MDA-MB-435S upon transfection with integrin αV-specific siRNA, suggesting a link between adhesion and drug sensitivity. To elucidate the underlying mechanism, we determined αV-dependent changes in IAC composition. Using mass spectrometry (MS)-based proteomics, we analyzed the components of isolated IACs of MDA-MB-435S cells and two MDA-MB-435S-derived integrin αV-specific shRNA-expressing cell clones with decreased expression of integrin αV. MS analysis showed that cells preferentially use integrin αVβ5 for the formation of IACs. The differential analysis between MDA-MB-435S cells and clones with decreased expression of integrin αV identified key components of integrin αVβ5 adhesion complexes as talins 1 and 2, α-actinins 1 and 4, filamins A and B, plectin and vinculin. The data also revealed decreased levels of several components of the cortical microtubule stabilization complex, which recruits MTs to adhesion sites (notably liprins α and β, ELKS, LL5β, MACF1, KANK1, and KANK2), following αV knockdown. KANK2 knockdown in MDA-MB-435S cells mimicked the effect of integrin αV knockdown and resulted in increased sensitivity to MT poisons and decreased migration. Taken together, we conclude that KANK2 is a key molecule linking integrin αVβ5 IACs to MTs, and enabling the actin-MT crosstalk that is important for both sensitivity to MT poisons and cell migration. Frontiers Media S.A. 2020-03-03 /pmc/articles/PMC7063070/ /pubmed/32195252 http://dx.doi.org/10.3389/fcell.2020.00125 Text en Copyright © 2020 Paradžik, Humphries, Stojanović, Nestić, Majhen, Dekanić, Samaržija, Sedda, Weber, Humphries and Ambriović-Ristov. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Paradžik, Mladen
Humphries, Jonathan D.
Stojanović, Nikolina
Nestić, Davor
Majhen, Dragomira
Dekanić, Ana
Samaržija, Ivana
Sedda, Delphine
Weber, Igor
Humphries, Martin J.
Ambriović-Ristov, Andreja
KANK2 Links αVβ5 Focal Adhesions to Microtubules and Regulates Sensitivity to Microtubule Poisons and Cell Migration
title KANK2 Links αVβ5 Focal Adhesions to Microtubules and Regulates Sensitivity to Microtubule Poisons and Cell Migration
title_full KANK2 Links αVβ5 Focal Adhesions to Microtubules and Regulates Sensitivity to Microtubule Poisons and Cell Migration
title_fullStr KANK2 Links αVβ5 Focal Adhesions to Microtubules and Regulates Sensitivity to Microtubule Poisons and Cell Migration
title_full_unstemmed KANK2 Links αVβ5 Focal Adhesions to Microtubules and Regulates Sensitivity to Microtubule Poisons and Cell Migration
title_short KANK2 Links αVβ5 Focal Adhesions to Microtubules and Regulates Sensitivity to Microtubule Poisons and Cell Migration
title_sort kank2 links αvβ5 focal adhesions to microtubules and regulates sensitivity to microtubule poisons and cell migration
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7063070/
https://www.ncbi.nlm.nih.gov/pubmed/32195252
http://dx.doi.org/10.3389/fcell.2020.00125
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