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Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression

Mitochondria are signaling organelles implicated in cancer, but the mechanisms are elusive. Here, we show that Parkin, an E3 ubiquitination (Ub) ligase altered in Parkinson’s disease, forms a complex with the regulator of cell motility, Kindlin-2 (K2), at mitochondria of tumor cells. In turn, Parkin...

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Autores principales: Yeon, Minjeong, Bertolini, Irene, Agarwal, Ekta, Ghosh, Jagadish C., Tang, Hsin-Yao, Speicher, David W., Keeney, Frederick, Sossey-Alaoui, Khalid, Pluskota, Elzbieta, Bialkowska, Katarzyna, Plow, Edward F., Languino, Lucia R., Skordalakes, Emmanuel, Caino, M. Cecilia, Altieri, Dario C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10236456/
https://www.ncbi.nlm.nih.gov/pubmed/37142218
http://dx.doi.org/10.1016/j.jbc.2023.104774
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author Yeon, Minjeong
Bertolini, Irene
Agarwal, Ekta
Ghosh, Jagadish C.
Tang, Hsin-Yao
Speicher, David W.
Keeney, Frederick
Sossey-Alaoui, Khalid
Pluskota, Elzbieta
Bialkowska, Katarzyna
Plow, Edward F.
Languino, Lucia R.
Skordalakes, Emmanuel
Caino, M. Cecilia
Altieri, Dario C.
author_facet Yeon, Minjeong
Bertolini, Irene
Agarwal, Ekta
Ghosh, Jagadish C.
Tang, Hsin-Yao
Speicher, David W.
Keeney, Frederick
Sossey-Alaoui, Khalid
Pluskota, Elzbieta
Bialkowska, Katarzyna
Plow, Edward F.
Languino, Lucia R.
Skordalakes, Emmanuel
Caino, M. Cecilia
Altieri, Dario C.
author_sort Yeon, Minjeong
collection PubMed
description Mitochondria are signaling organelles implicated in cancer, but the mechanisms are elusive. Here, we show that Parkin, an E3 ubiquitination (Ub) ligase altered in Parkinson’s disease, forms a complex with the regulator of cell motility, Kindlin-2 (K2), at mitochondria of tumor cells. In turn, Parkin ubiquitinates Lys581 and Lys582 using Lys48 linkages, resulting in proteasomal degradation of K2 and shortened half-life from ∼5 h to ∼1.5 h. Loss of K2 inhibits focal adhesion turnover and β1 integrin activation, impairs membrane lamellipodia size and frequency, and inhibits mitochondrial dynamics, altogether suppressing tumor cell–extracellular matrix interactions, migration, and invasion. Conversely, Parkin does not affect tumor cell proliferation, cell cycle transitions, or apoptosis. Expression of a Parkin Ub-resistant K2 Lys581Ala/Lys582Ala double mutant is sufficient to restore membrane lamellipodia dynamics, correct mitochondrial fusion/fission, and preserve single-cell migration and invasion. In a 3D model of mammary gland developmental morphogenesis, impaired K2 Ub drives multiple oncogenic traits of EMT, increased cell proliferation, reduced apoptosis, and disrupted basal–apical polarity. Therefore, deregulated K2 is a potent oncogene, and its Ub by Parkin enables mitochondria-associated metastasis suppression.
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spelling pubmed-102364562023-06-03 Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression Yeon, Minjeong Bertolini, Irene Agarwal, Ekta Ghosh, Jagadish C. Tang, Hsin-Yao Speicher, David W. Keeney, Frederick Sossey-Alaoui, Khalid Pluskota, Elzbieta Bialkowska, Katarzyna Plow, Edward F. Languino, Lucia R. Skordalakes, Emmanuel Caino, M. Cecilia Altieri, Dario C. J Biol Chem JBC Communication Mitochondria are signaling organelles implicated in cancer, but the mechanisms are elusive. Here, we show that Parkin, an E3 ubiquitination (Ub) ligase altered in Parkinson’s disease, forms a complex with the regulator of cell motility, Kindlin-2 (K2), at mitochondria of tumor cells. In turn, Parkin ubiquitinates Lys581 and Lys582 using Lys48 linkages, resulting in proteasomal degradation of K2 and shortened half-life from ∼5 h to ∼1.5 h. Loss of K2 inhibits focal adhesion turnover and β1 integrin activation, impairs membrane lamellipodia size and frequency, and inhibits mitochondrial dynamics, altogether suppressing tumor cell–extracellular matrix interactions, migration, and invasion. Conversely, Parkin does not affect tumor cell proliferation, cell cycle transitions, or apoptosis. Expression of a Parkin Ub-resistant K2 Lys581Ala/Lys582Ala double mutant is sufficient to restore membrane lamellipodia dynamics, correct mitochondrial fusion/fission, and preserve single-cell migration and invasion. In a 3D model of mammary gland developmental morphogenesis, impaired K2 Ub drives multiple oncogenic traits of EMT, increased cell proliferation, reduced apoptosis, and disrupted basal–apical polarity. Therefore, deregulated K2 is a potent oncogene, and its Ub by Parkin enables mitochondria-associated metastasis suppression. American Society for Biochemistry and Molecular Biology 2023-05-02 /pmc/articles/PMC10236456/ /pubmed/37142218 http://dx.doi.org/10.1016/j.jbc.2023.104774 Text en © 2023 The Authors 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 JBC Communication
Yeon, Minjeong
Bertolini, Irene
Agarwal, Ekta
Ghosh, Jagadish C.
Tang, Hsin-Yao
Speicher, David W.
Keeney, Frederick
Sossey-Alaoui, Khalid
Pluskota, Elzbieta
Bialkowska, Katarzyna
Plow, Edward F.
Languino, Lucia R.
Skordalakes, Emmanuel
Caino, M. Cecilia
Altieri, Dario C.
Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression
title Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression
title_full Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression
title_fullStr Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression
title_full_unstemmed Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression
title_short Parkin ubiquitination of Kindlin-2 enables mitochondria-associated metastasis suppression
title_sort parkin ubiquitination of kindlin-2 enables mitochondria-associated metastasis suppression
topic JBC Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10236456/
https://www.ncbi.nlm.nih.gov/pubmed/37142218
http://dx.doi.org/10.1016/j.jbc.2023.104774
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