Cargando…

Simulated Microgravity Inhibits the Proliferation of Chang Liver Cells by Attenuation of the Major Cell Cycle Regulators and Cytoskeletal Proteins

Simulated microgravity (SMG) induced the changes in cell proliferation and cytoskeleton organization, which plays an important factor in various cellular processes. The inhibition in cell cycle progression has been considered to be one of the main causes of proliferation inhibition in cells under SM...

Descripción completa

Detalles Bibliográficos
Autores principales: Ho, Chi Nguyen Quynh, Tran, Minh Thi, Doan, Chung Chinh, Hoang, Son Nghia, Tran, Diem Hong, Le, Long Thanh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8123698/
https://www.ncbi.nlm.nih.gov/pubmed/33925309
http://dx.doi.org/10.3390/ijms22094550
_version_ 1783692982014181376
author Ho, Chi Nguyen Quynh
Tran, Minh Thi
Doan, Chung Chinh
Hoang, Son Nghia
Tran, Diem Hong
Le, Long Thanh
author_facet Ho, Chi Nguyen Quynh
Tran, Minh Thi
Doan, Chung Chinh
Hoang, Son Nghia
Tran, Diem Hong
Le, Long Thanh
author_sort Ho, Chi Nguyen Quynh
collection PubMed
description Simulated microgravity (SMG) induced the changes in cell proliferation and cytoskeleton organization, which plays an important factor in various cellular processes. The inhibition in cell cycle progression has been considered to be one of the main causes of proliferation inhibition in cells under SMG, but their mechanisms are still not fully understood. This study aimed to evaluate the effects of SMG on the proliferative ability and cytoskeleton changes of Chang Liver Cells (CCL-13). CCL-13 cells were induced SMG by 3D clinostat for 72 h, while the control group were treated in normal gravity at the same time. The results showed that SMG reduced CCL-13 cell proliferation by an increase in the number of CCL-13 cells in G0/G1 phase. This cell cycle phase arrest of CCL-13 cells was due to a downregulation of cell cycle-related proteins, such as cyclin A1 and A2, cyclin D1, and cyclin-dependent kinase 6 (Cdk6). SMG-exposed CCL-13 cells also exhibited a downregulation of α-tubulin 3 and β-actin which induced the cytoskeleton reorganization. These results suggested that the inhibited proliferation of SMG-exposed CCL-13 cells could be associate with the attenuation of major cell cycle regulators and main cytoskeletal proteins.
format Online
Article
Text
id pubmed-8123698
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-81236982021-05-16 Simulated Microgravity Inhibits the Proliferation of Chang Liver Cells by Attenuation of the Major Cell Cycle Regulators and Cytoskeletal Proteins Ho, Chi Nguyen Quynh Tran, Minh Thi Doan, Chung Chinh Hoang, Son Nghia Tran, Diem Hong Le, Long Thanh Int J Mol Sci Article Simulated microgravity (SMG) induced the changes in cell proliferation and cytoskeleton organization, which plays an important factor in various cellular processes. The inhibition in cell cycle progression has been considered to be one of the main causes of proliferation inhibition in cells under SMG, but their mechanisms are still not fully understood. This study aimed to evaluate the effects of SMG on the proliferative ability and cytoskeleton changes of Chang Liver Cells (CCL-13). CCL-13 cells were induced SMG by 3D clinostat for 72 h, while the control group were treated in normal gravity at the same time. The results showed that SMG reduced CCL-13 cell proliferation by an increase in the number of CCL-13 cells in G0/G1 phase. This cell cycle phase arrest of CCL-13 cells was due to a downregulation of cell cycle-related proteins, such as cyclin A1 and A2, cyclin D1, and cyclin-dependent kinase 6 (Cdk6). SMG-exposed CCL-13 cells also exhibited a downregulation of α-tubulin 3 and β-actin which induced the cytoskeleton reorganization. These results suggested that the inhibited proliferation of SMG-exposed CCL-13 cells could be associate with the attenuation of major cell cycle regulators and main cytoskeletal proteins. MDPI 2021-04-27 /pmc/articles/PMC8123698/ /pubmed/33925309 http://dx.doi.org/10.3390/ijms22094550 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ho, Chi Nguyen Quynh
Tran, Minh Thi
Doan, Chung Chinh
Hoang, Son Nghia
Tran, Diem Hong
Le, Long Thanh
Simulated Microgravity Inhibits the Proliferation of Chang Liver Cells by Attenuation of the Major Cell Cycle Regulators and Cytoskeletal Proteins
title Simulated Microgravity Inhibits the Proliferation of Chang Liver Cells by Attenuation of the Major Cell Cycle Regulators and Cytoskeletal Proteins
title_full Simulated Microgravity Inhibits the Proliferation of Chang Liver Cells by Attenuation of the Major Cell Cycle Regulators and Cytoskeletal Proteins
title_fullStr Simulated Microgravity Inhibits the Proliferation of Chang Liver Cells by Attenuation of the Major Cell Cycle Regulators and Cytoskeletal Proteins
title_full_unstemmed Simulated Microgravity Inhibits the Proliferation of Chang Liver Cells by Attenuation of the Major Cell Cycle Regulators and Cytoskeletal Proteins
title_short Simulated Microgravity Inhibits the Proliferation of Chang Liver Cells by Attenuation of the Major Cell Cycle Regulators and Cytoskeletal Proteins
title_sort simulated microgravity inhibits the proliferation of chang liver cells by attenuation of the major cell cycle regulators and cytoskeletal proteins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8123698/
https://www.ncbi.nlm.nih.gov/pubmed/33925309
http://dx.doi.org/10.3390/ijms22094550
work_keys_str_mv AT hochinguyenquynh simulatedmicrogravityinhibitstheproliferationofchanglivercellsbyattenuationofthemajorcellcycleregulatorsandcytoskeletalproteins
AT tranminhthi simulatedmicrogravityinhibitstheproliferationofchanglivercellsbyattenuationofthemajorcellcycleregulatorsandcytoskeletalproteins
AT doanchungchinh simulatedmicrogravityinhibitstheproliferationofchanglivercellsbyattenuationofthemajorcellcycleregulatorsandcytoskeletalproteins
AT hoangsonnghia simulatedmicrogravityinhibitstheproliferationofchanglivercellsbyattenuationofthemajorcellcycleregulatorsandcytoskeletalproteins
AT trandiemhong simulatedmicrogravityinhibitstheproliferationofchanglivercellsbyattenuationofthemajorcellcycleregulatorsandcytoskeletalproteins
AT lelongthanh simulatedmicrogravityinhibitstheproliferationofchanglivercellsbyattenuationofthemajorcellcycleregulatorsandcytoskeletalproteins