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Real Microgravity Influences the Cytoskeleton and Focal Adhesions in Human Breast Cancer Cells

With the increasing number of spaceflights, it is crucial to understand the changes occurring in human cells exposed to real microgravity (r-µg) conditions. We tested the effect of r-µg on MCF-7 breast cancer cells with the objective to investigate cytoskeletal alterations and early changes in the g...

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Autores principales: Nassef, Mohamed Zakaria, Kopp, Sascha, Wehland, Markus, Melnik, Daniela, Sahana, Jayashree, Krüger, Marcus, Corydon, Thomas J., Oltmann, Hergen, Schmitz, Burkhard, Schütte, Andreas, Bauer, Thomas J., Infanger, Manfred, Grimm, Daniela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6651518/
https://www.ncbi.nlm.nih.gov/pubmed/31261642
http://dx.doi.org/10.3390/ijms20133156
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author Nassef, Mohamed Zakaria
Kopp, Sascha
Wehland, Markus
Melnik, Daniela
Sahana, Jayashree
Krüger, Marcus
Corydon, Thomas J.
Oltmann, Hergen
Schmitz, Burkhard
Schütte, Andreas
Bauer, Thomas J.
Infanger, Manfred
Grimm, Daniela
author_facet Nassef, Mohamed Zakaria
Kopp, Sascha
Wehland, Markus
Melnik, Daniela
Sahana, Jayashree
Krüger, Marcus
Corydon, Thomas J.
Oltmann, Hergen
Schmitz, Burkhard
Schütte, Andreas
Bauer, Thomas J.
Infanger, Manfred
Grimm, Daniela
author_sort Nassef, Mohamed Zakaria
collection PubMed
description With the increasing number of spaceflights, it is crucial to understand the changes occurring in human cells exposed to real microgravity (r-µg) conditions. We tested the effect of r-µg on MCF-7 breast cancer cells with the objective to investigate cytoskeletal alterations and early changes in the gene expression of factors belonging to the cytoskeleton, extracellular matrix, focal adhesion, and cytokines. In the Technische Experimente unter Schwerelosigkeit (TEXUS) 54 rocket mission, we had the opportunity to conduct our experiment during 6 min of r-µg and focused on cytoskeletal alterations of MCF-7 breast cancer cells expressing the Lifeact-GFP marker protein for the visualization of F-actin as well as the mCherry-tubulin fusion protein using the Fluorescence Microscopy Analysis System (FLUMIAS) for fast live-cell imaging under r-µg. Moreover, in a second mission we investigated changes in RNA transcription and morphology in breast cancer cells exposed to parabolic flight (PF) maneuvers (31st Deutsches Zentrum für Luft- und Raumfahrt (DLR) PF campaign). The MCF-7 cells showed a rearrangement of the F-actin and tubulin with holes, accumulations in the tubulin network, and the appearance of filopodia- and lamellipodia-like structures in the F-actin cytoskeleton shortly after the beginning of the r-µg period. PF maneuvers induced an early up-regulation of KRT8, RDX, TIMP1, CXCL8 mRNAs, and a down-regulation of VCL after the first parabola. E-cadherin protein was significantly reduced and is involved in cell adhesion processes, and plays a significant role in tumorigenesis. Changes in the E-cadherin protein synthesis can lead to tumor progression. Pathway analyses indicate that VCL protein has an activating effect on CDH1. In conclusion, live-cell imaging visualized similar changes as those occurring in thyroid cancer cells in r-µg. This result indicates the presence of a common mechanism of gravity perception and sensation.
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spelling pubmed-66515182019-08-08 Real Microgravity Influences the Cytoskeleton and Focal Adhesions in Human Breast Cancer Cells Nassef, Mohamed Zakaria Kopp, Sascha Wehland, Markus Melnik, Daniela Sahana, Jayashree Krüger, Marcus Corydon, Thomas J. Oltmann, Hergen Schmitz, Burkhard Schütte, Andreas Bauer, Thomas J. Infanger, Manfred Grimm, Daniela Int J Mol Sci Article With the increasing number of spaceflights, it is crucial to understand the changes occurring in human cells exposed to real microgravity (r-µg) conditions. We tested the effect of r-µg on MCF-7 breast cancer cells with the objective to investigate cytoskeletal alterations and early changes in the gene expression of factors belonging to the cytoskeleton, extracellular matrix, focal adhesion, and cytokines. In the Technische Experimente unter Schwerelosigkeit (TEXUS) 54 rocket mission, we had the opportunity to conduct our experiment during 6 min of r-µg and focused on cytoskeletal alterations of MCF-7 breast cancer cells expressing the Lifeact-GFP marker protein for the visualization of F-actin as well as the mCherry-tubulin fusion protein using the Fluorescence Microscopy Analysis System (FLUMIAS) for fast live-cell imaging under r-µg. Moreover, in a second mission we investigated changes in RNA transcription and morphology in breast cancer cells exposed to parabolic flight (PF) maneuvers (31st Deutsches Zentrum für Luft- und Raumfahrt (DLR) PF campaign). The MCF-7 cells showed a rearrangement of the F-actin and tubulin with holes, accumulations in the tubulin network, and the appearance of filopodia- and lamellipodia-like structures in the F-actin cytoskeleton shortly after the beginning of the r-µg period. PF maneuvers induced an early up-regulation of KRT8, RDX, TIMP1, CXCL8 mRNAs, and a down-regulation of VCL after the first parabola. E-cadherin protein was significantly reduced and is involved in cell adhesion processes, and plays a significant role in tumorigenesis. Changes in the E-cadherin protein synthesis can lead to tumor progression. Pathway analyses indicate that VCL protein has an activating effect on CDH1. In conclusion, live-cell imaging visualized similar changes as those occurring in thyroid cancer cells in r-µg. This result indicates the presence of a common mechanism of gravity perception and sensation. MDPI 2019-06-28 /pmc/articles/PMC6651518/ /pubmed/31261642 http://dx.doi.org/10.3390/ijms20133156 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nassef, Mohamed Zakaria
Kopp, Sascha
Wehland, Markus
Melnik, Daniela
Sahana, Jayashree
Krüger, Marcus
Corydon, Thomas J.
Oltmann, Hergen
Schmitz, Burkhard
Schütte, Andreas
Bauer, Thomas J.
Infanger, Manfred
Grimm, Daniela
Real Microgravity Influences the Cytoskeleton and Focal Adhesions in Human Breast Cancer Cells
title Real Microgravity Influences the Cytoskeleton and Focal Adhesions in Human Breast Cancer Cells
title_full Real Microgravity Influences the Cytoskeleton and Focal Adhesions in Human Breast Cancer Cells
title_fullStr Real Microgravity Influences the Cytoskeleton and Focal Adhesions in Human Breast Cancer Cells
title_full_unstemmed Real Microgravity Influences the Cytoskeleton and Focal Adhesions in Human Breast Cancer Cells
title_short Real Microgravity Influences the Cytoskeleton and Focal Adhesions in Human Breast Cancer Cells
title_sort real microgravity influences the cytoskeleton and focal adhesions in human breast cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6651518/
https://www.ncbi.nlm.nih.gov/pubmed/31261642
http://dx.doi.org/10.3390/ijms20133156
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