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Depleting RhoA/Stress Fiber-Organized Fibronectin Matrices on Tumor Cells Non-Autonomously Aggravates Fibroblast-Driven Tumor Cell Growth

Fibronectin (FN) expressed by tumor cells has been known to be tumor suppressive but the pericellular FN (periFN) assembled on circulating tumor cells appears to evidently promote distant metastasis. Whereas the regulation of periFN assembly in suspended cells has currently been under investigation,...

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Autores principales: Huang, Li-Tzu, Tsai, Chen-Lung, Huang, Shin-Huei, Chang, Ming-Min, Chang, Wen-Tsan, Cheng, Li-Hsin, Cheng, Hung-Chi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7663795/
https://www.ncbi.nlm.nih.gov/pubmed/33158289
http://dx.doi.org/10.3390/ijms21218272
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author Huang, Li-Tzu
Tsai, Chen-Lung
Huang, Shin-Huei
Chang, Ming-Min
Chang, Wen-Tsan
Cheng, Li-Hsin
Cheng, Hung-Chi
author_facet Huang, Li-Tzu
Tsai, Chen-Lung
Huang, Shin-Huei
Chang, Ming-Min
Chang, Wen-Tsan
Cheng, Li-Hsin
Cheng, Hung-Chi
author_sort Huang, Li-Tzu
collection PubMed
description Fibronectin (FN) expressed by tumor cells has been known to be tumor suppressive but the pericellular FN (periFN) assembled on circulating tumor cells appears to evidently promote distant metastasis. Whereas the regulation of periFN assembly in suspended cells has currently been under investigation, how it is regulated in adherent tumor cells and the role of periFN in primary tumor growth remain elusive. Techniques of RNAi, plasmid transfections, immunoblotting, fluorescence/immunohistochemistry staining, cell proliferation assays, and primary tumor growth in C57BL6 mice and Fischer 344 rats were employed in this study. We found that endogenously synthesized FN in adherent tumor cells was required for periFN assembly which was aligned by RhoA-organized actin stress fiber (SF). Depleting periFN on adherent tumor cells congruently promoted in vivo tumor growth but surprisingly did not autonomously impact on in vitro tumor cell proliferation and apoptosis, suggestive of a non-autonomous role of periFN in in vivo tumor growth. We showed that the proliferative ability of shFN-expressing tumor cells was higher than shScramble cells did in the presence of fibroblasts. Altogether, these results suggested that depriving RhoA/SF-regulated periFN matrices non-autonomously promotes fibroblast-mediated tumor cell growth.
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spelling pubmed-76637952020-11-14 Depleting RhoA/Stress Fiber-Organized Fibronectin Matrices on Tumor Cells Non-Autonomously Aggravates Fibroblast-Driven Tumor Cell Growth Huang, Li-Tzu Tsai, Chen-Lung Huang, Shin-Huei Chang, Ming-Min Chang, Wen-Tsan Cheng, Li-Hsin Cheng, Hung-Chi Int J Mol Sci Article Fibronectin (FN) expressed by tumor cells has been known to be tumor suppressive but the pericellular FN (periFN) assembled on circulating tumor cells appears to evidently promote distant metastasis. Whereas the regulation of periFN assembly in suspended cells has currently been under investigation, how it is regulated in adherent tumor cells and the role of periFN in primary tumor growth remain elusive. Techniques of RNAi, plasmid transfections, immunoblotting, fluorescence/immunohistochemistry staining, cell proliferation assays, and primary tumor growth in C57BL6 mice and Fischer 344 rats were employed in this study. We found that endogenously synthesized FN in adherent tumor cells was required for periFN assembly which was aligned by RhoA-organized actin stress fiber (SF). Depleting periFN on adherent tumor cells congruently promoted in vivo tumor growth but surprisingly did not autonomously impact on in vitro tumor cell proliferation and apoptosis, suggestive of a non-autonomous role of periFN in in vivo tumor growth. We showed that the proliferative ability of shFN-expressing tumor cells was higher than shScramble cells did in the presence of fibroblasts. Altogether, these results suggested that depriving RhoA/SF-regulated periFN matrices non-autonomously promotes fibroblast-mediated tumor cell growth. MDPI 2020-11-04 /pmc/articles/PMC7663795/ /pubmed/33158289 http://dx.doi.org/10.3390/ijms21218272 Text en © 2020 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
Huang, Li-Tzu
Tsai, Chen-Lung
Huang, Shin-Huei
Chang, Ming-Min
Chang, Wen-Tsan
Cheng, Li-Hsin
Cheng, Hung-Chi
Depleting RhoA/Stress Fiber-Organized Fibronectin Matrices on Tumor Cells Non-Autonomously Aggravates Fibroblast-Driven Tumor Cell Growth
title Depleting RhoA/Stress Fiber-Organized Fibronectin Matrices on Tumor Cells Non-Autonomously Aggravates Fibroblast-Driven Tumor Cell Growth
title_full Depleting RhoA/Stress Fiber-Organized Fibronectin Matrices on Tumor Cells Non-Autonomously Aggravates Fibroblast-Driven Tumor Cell Growth
title_fullStr Depleting RhoA/Stress Fiber-Organized Fibronectin Matrices on Tumor Cells Non-Autonomously Aggravates Fibroblast-Driven Tumor Cell Growth
title_full_unstemmed Depleting RhoA/Stress Fiber-Organized Fibronectin Matrices on Tumor Cells Non-Autonomously Aggravates Fibroblast-Driven Tumor Cell Growth
title_short Depleting RhoA/Stress Fiber-Organized Fibronectin Matrices on Tumor Cells Non-Autonomously Aggravates Fibroblast-Driven Tumor Cell Growth
title_sort depleting rhoa/stress fiber-organized fibronectin matrices on tumor cells non-autonomously aggravates fibroblast-driven tumor cell growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7663795/
https://www.ncbi.nlm.nih.gov/pubmed/33158289
http://dx.doi.org/10.3390/ijms21218272
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