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Down regulation of Akirin-2 increases chemosensitivity in human glioblastomas more efficiently than Twist-1

The Twist-1 transcription factor and its interacting protein Akirin-2 regulate apoptosis. We found that in glioblastomas, highly malignant brain tumors, Akirin-2 and Twist-1 were expressed in glial fibrillary acidic protein positive tumor regions as well as in tumor endothelial cells and infiltratin...

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Autores principales: Krossa, Sebastian, Schmitt, Anne Dorothée, Hattermann, Kirsten, Fritsch, Jürgen, Scheidig, Axel J., Mehdorn, Hubertus Maximilian, Held-Feindt, Janka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4673248/
https://www.ncbi.nlm.nih.gov/pubmed/26036627
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author Krossa, Sebastian
Schmitt, Anne Dorothée
Hattermann, Kirsten
Fritsch, Jürgen
Scheidig, Axel J.
Mehdorn, Hubertus Maximilian
Held-Feindt, Janka
author_facet Krossa, Sebastian
Schmitt, Anne Dorothée
Hattermann, Kirsten
Fritsch, Jürgen
Scheidig, Axel J.
Mehdorn, Hubertus Maximilian
Held-Feindt, Janka
author_sort Krossa, Sebastian
collection PubMed
description The Twist-1 transcription factor and its interacting protein Akirin-2 regulate apoptosis. We found that in glioblastomas, highly malignant brain tumors, Akirin-2 and Twist-1 were expressed in glial fibrillary acidic protein positive tumor regions as well as in tumor endothelial cells and infiltrating macrophages / microglia. Temozolomide (TMZ) induced the expression of both molecules, partly shifting their nuclear to cytosolic localization. The knock-down (kd) of Akirin-2 increased the activity of cleaved (c)Caspase-3/-7, the amounts of cCaspases-3, -7 and cPARP-1 and resulted in an increased number of apoptotic cells after TMZ exposure. Glioblastoma cells containing decreased amounts of Akirin-2 after kd contained increased amounts of cCaspase-3 as determined by the ImageStream(x) Mark II technology. For Twist-1, similar results were obtained with the exception that the combination of TMZ treatment and Twist-1 kd failed to significantly reduce chemoresistance compared with controls. This could be attributed to a cell population containing only slightly increased cCaspase-3 together with decreased Twist-1 levels, which was clearly larger than the respective population observed under Akirin-2 kd. Our results showed that, compared with Twist-1, Akirin-2 is the more promising target for RNAi strategies antagonizing Twist-1/Akirin-2 facilitated glioblastoma cell survival.
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spelling pubmed-46732482015-12-22 Down regulation of Akirin-2 increases chemosensitivity in human glioblastomas more efficiently than Twist-1 Krossa, Sebastian Schmitt, Anne Dorothée Hattermann, Kirsten Fritsch, Jürgen Scheidig, Axel J. Mehdorn, Hubertus Maximilian Held-Feindt, Janka Oncotarget Research Paper The Twist-1 transcription factor and its interacting protein Akirin-2 regulate apoptosis. We found that in glioblastomas, highly malignant brain tumors, Akirin-2 and Twist-1 were expressed in glial fibrillary acidic protein positive tumor regions as well as in tumor endothelial cells and infiltrating macrophages / microglia. Temozolomide (TMZ) induced the expression of both molecules, partly shifting their nuclear to cytosolic localization. The knock-down (kd) of Akirin-2 increased the activity of cleaved (c)Caspase-3/-7, the amounts of cCaspases-3, -7 and cPARP-1 and resulted in an increased number of apoptotic cells after TMZ exposure. Glioblastoma cells containing decreased amounts of Akirin-2 after kd contained increased amounts of cCaspase-3 as determined by the ImageStream(x) Mark II technology. For Twist-1, similar results were obtained with the exception that the combination of TMZ treatment and Twist-1 kd failed to significantly reduce chemoresistance compared with controls. This could be attributed to a cell population containing only slightly increased cCaspase-3 together with decreased Twist-1 levels, which was clearly larger than the respective population observed under Akirin-2 kd. Our results showed that, compared with Twist-1, Akirin-2 is the more promising target for RNAi strategies antagonizing Twist-1/Akirin-2 facilitated glioblastoma cell survival. Impact Journals LLC 2015-04-18 /pmc/articles/PMC4673248/ /pubmed/26036627 Text en Copyright: © 2015 Krossa et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Krossa, Sebastian
Schmitt, Anne Dorothée
Hattermann, Kirsten
Fritsch, Jürgen
Scheidig, Axel J.
Mehdorn, Hubertus Maximilian
Held-Feindt, Janka
Down regulation of Akirin-2 increases chemosensitivity in human glioblastomas more efficiently than Twist-1
title Down regulation of Akirin-2 increases chemosensitivity in human glioblastomas more efficiently than Twist-1
title_full Down regulation of Akirin-2 increases chemosensitivity in human glioblastomas more efficiently than Twist-1
title_fullStr Down regulation of Akirin-2 increases chemosensitivity in human glioblastomas more efficiently than Twist-1
title_full_unstemmed Down regulation of Akirin-2 increases chemosensitivity in human glioblastomas more efficiently than Twist-1
title_short Down regulation of Akirin-2 increases chemosensitivity in human glioblastomas more efficiently than Twist-1
title_sort down regulation of akirin-2 increases chemosensitivity in human glioblastomas more efficiently than twist-1
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4673248/
https://www.ncbi.nlm.nih.gov/pubmed/26036627
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