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Sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo

BACKGROUND: Previous studies demonstrated that selenite induced cancer-cell apoptosis through multiple mechanisms; however, effects of selenite on microtubules in leukemic cells have not been demonstrated. METHODS: The toxic effect of selenite on leukemic HL60 cells was performed with cell counting...

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Autores principales: Shi, Kejian, Jiang, Qian, Li, Zhushi, Shan, Lei, Li, Feng, An, JiaJia, Yang, Yang, Xu, Caimin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561191/
https://www.ncbi.nlm.nih.gov/pubmed/23327530
http://dx.doi.org/10.1186/1756-8722-6-7
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author Shi, Kejian
Jiang, Qian
Li, Zhushi
Shan, Lei
Li, Feng
An, JiaJia
Yang, Yang
Xu, Caimin
author_facet Shi, Kejian
Jiang, Qian
Li, Zhushi
Shan, Lei
Li, Feng
An, JiaJia
Yang, Yang
Xu, Caimin
author_sort Shi, Kejian
collection PubMed
description BACKGROUND: Previous studies demonstrated that selenite induced cancer-cell apoptosis through multiple mechanisms; however, effects of selenite on microtubules in leukemic cells have not been demonstrated. METHODS: The toxic effect of selenite on leukemic HL60 cells was performed with cell counting kit 8. Selenite effects on cell cycle distribution and apoptosis induction were determined by flow cytometry. The contents of cyclin B1, Mcl-1, AIF, cytochrome C, insoluble and soluble tubulins were detected with western blotting. Microtubules were visualized with indirect immunofluorescence microscopy. The interaction between CDK1 and Mcl-1 was assessed with immunoprecipitation. Decreasing Mcl-1 and cyclin B1 expression were carried out through siRNA interference. The alterations of Mcl-1 and cyclin B1 in animal model were detected with either immunohistochemical staining or western blotting. In situ detection of apoptotic ratio was performed with TUNEL assay. RESULTS: Our current results showed that selenite inhibited the growth of HL60 cells and induced mitochondrial-related apoptosis. Furthermore, we found that microtubule assembly in HL60 cells was altered, those cells were arrested at G2/M phase, and Cyclin B1 was up-regulated and interacted with CDK1, which led to down-regulation of the anti-apoptotic protein Mcl-1. Finally, in vivo experiments confirmed the in vitro microtubule disruption effect and alterations in Cyclin B1 and Mcl-1 levels by selenite. CONCLUSIONS: Taken together, the results from our study indicate that microtubules are novel targets of selenite in leukemic HL60 cells.
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spelling pubmed-35611912013-02-05 Sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo Shi, Kejian Jiang, Qian Li, Zhushi Shan, Lei Li, Feng An, JiaJia Yang, Yang Xu, Caimin J Hematol Oncol Research BACKGROUND: Previous studies demonstrated that selenite induced cancer-cell apoptosis through multiple mechanisms; however, effects of selenite on microtubules in leukemic cells have not been demonstrated. METHODS: The toxic effect of selenite on leukemic HL60 cells was performed with cell counting kit 8. Selenite effects on cell cycle distribution and apoptosis induction were determined by flow cytometry. The contents of cyclin B1, Mcl-1, AIF, cytochrome C, insoluble and soluble tubulins were detected with western blotting. Microtubules were visualized with indirect immunofluorescence microscopy. The interaction between CDK1 and Mcl-1 was assessed with immunoprecipitation. Decreasing Mcl-1 and cyclin B1 expression were carried out through siRNA interference. The alterations of Mcl-1 and cyclin B1 in animal model were detected with either immunohistochemical staining or western blotting. In situ detection of apoptotic ratio was performed with TUNEL assay. RESULTS: Our current results showed that selenite inhibited the growth of HL60 cells and induced mitochondrial-related apoptosis. Furthermore, we found that microtubule assembly in HL60 cells was altered, those cells were arrested at G2/M phase, and Cyclin B1 was up-regulated and interacted with CDK1, which led to down-regulation of the anti-apoptotic protein Mcl-1. Finally, in vivo experiments confirmed the in vitro microtubule disruption effect and alterations in Cyclin B1 and Mcl-1 levels by selenite. CONCLUSIONS: Taken together, the results from our study indicate that microtubules are novel targets of selenite in leukemic HL60 cells. BioMed Central 2013-01-17 /pmc/articles/PMC3561191/ /pubmed/23327530 http://dx.doi.org/10.1186/1756-8722-6-7 Text en Copyright ©2013 Shi et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Shi, Kejian
Jiang, Qian
Li, Zhushi
Shan, Lei
Li, Feng
An, JiaJia
Yang, Yang
Xu, Caimin
Sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo
title Sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo
title_full Sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo
title_fullStr Sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo
title_full_unstemmed Sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo
title_short Sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo
title_sort sodium selenite alters microtubule assembly and induces apoptosis in vitro and in vivo
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3561191/
https://www.ncbi.nlm.nih.gov/pubmed/23327530
http://dx.doi.org/10.1186/1756-8722-6-7
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