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Targeting Telomerase and ATRX/DAXX Inducing Tumor Senescence and Apoptosis in the Malignant Glioma

Glioblastoma multiforme (GBM) is a type of brain tumor that is notorious for its aggressiveness and invasiveness, and the complete removal of GBM is still not possible, even with advanced diagnostic strategies and extensive therapeutic plans. Its dismal prognosis and short survival time after diagno...

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Autores principales: Fan, Hueng-Chuen, Chen, Chuan-Mu, Chi, Ching-Shiang, Tsai, Jeng-Dau, Chiang, Kuo-Liang, Chang, Yu-Kang, Lin, Shinn-Zong, Harn, Horng-Jyh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6337644/
https://www.ncbi.nlm.nih.gov/pubmed/30625996
http://dx.doi.org/10.3390/ijms20010200
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author Fan, Hueng-Chuen
Chen, Chuan-Mu
Chi, Ching-Shiang
Tsai, Jeng-Dau
Chiang, Kuo-Liang
Chang, Yu-Kang
Lin, Shinn-Zong
Harn, Horng-Jyh
author_facet Fan, Hueng-Chuen
Chen, Chuan-Mu
Chi, Ching-Shiang
Tsai, Jeng-Dau
Chiang, Kuo-Liang
Chang, Yu-Kang
Lin, Shinn-Zong
Harn, Horng-Jyh
author_sort Fan, Hueng-Chuen
collection PubMed
description Glioblastoma multiforme (GBM) is a type of brain tumor that is notorious for its aggressiveness and invasiveness, and the complete removal of GBM is still not possible, even with advanced diagnostic strategies and extensive therapeutic plans. Its dismal prognosis and short survival time after diagnosis make it a crucial public health issue. Understanding the molecular mechanisms underlying GBM may inspire novel and effective treatments against this type of cancer. At a molecular level, almost all tumor cells exhibit telomerase activity (TA), which is a major means by which they achieve immortalization. Further studies show that promoter mutations are associated with increased TA and stable telomere length. Moreover, some tumors and immortalized cells maintain their telomeres with a telomerase-independent mechanism termed the “alternative lengthening of telomeres” (ALT), which relates to the mutations of the α-thalassemia/mental retardation syndrome X-linked protein (ATRX), the death-domain associated protein (DAXX) and H3.3. By means of the mutations of the telomerase reverse transcriptase (TERT) promoter and ATRX/DAXX, cancers can immortalize and escape cell senescence and apoptosis. In this article, we review the evidence for triggering GBM cell death by targeting telomerase and the ALT pathway, with an extra focus on a plant-derived compound, butylidene phthalide (BP), which may be a promising novel anticancer compound with good potential for clinical applications.
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spelling pubmed-63376442019-01-22 Targeting Telomerase and ATRX/DAXX Inducing Tumor Senescence and Apoptosis in the Malignant Glioma Fan, Hueng-Chuen Chen, Chuan-Mu Chi, Ching-Shiang Tsai, Jeng-Dau Chiang, Kuo-Liang Chang, Yu-Kang Lin, Shinn-Zong Harn, Horng-Jyh Int J Mol Sci Review Glioblastoma multiforme (GBM) is a type of brain tumor that is notorious for its aggressiveness and invasiveness, and the complete removal of GBM is still not possible, even with advanced diagnostic strategies and extensive therapeutic plans. Its dismal prognosis and short survival time after diagnosis make it a crucial public health issue. Understanding the molecular mechanisms underlying GBM may inspire novel and effective treatments against this type of cancer. At a molecular level, almost all tumor cells exhibit telomerase activity (TA), which is a major means by which they achieve immortalization. Further studies show that promoter mutations are associated with increased TA and stable telomere length. Moreover, some tumors and immortalized cells maintain their telomeres with a telomerase-independent mechanism termed the “alternative lengthening of telomeres” (ALT), which relates to the mutations of the α-thalassemia/mental retardation syndrome X-linked protein (ATRX), the death-domain associated protein (DAXX) and H3.3. By means of the mutations of the telomerase reverse transcriptase (TERT) promoter and ATRX/DAXX, cancers can immortalize and escape cell senescence and apoptosis. In this article, we review the evidence for triggering GBM cell death by targeting telomerase and the ALT pathway, with an extra focus on a plant-derived compound, butylidene phthalide (BP), which may be a promising novel anticancer compound with good potential for clinical applications. MDPI 2019-01-08 /pmc/articles/PMC6337644/ /pubmed/30625996 http://dx.doi.org/10.3390/ijms20010200 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 Review
Fan, Hueng-Chuen
Chen, Chuan-Mu
Chi, Ching-Shiang
Tsai, Jeng-Dau
Chiang, Kuo-Liang
Chang, Yu-Kang
Lin, Shinn-Zong
Harn, Horng-Jyh
Targeting Telomerase and ATRX/DAXX Inducing Tumor Senescence and Apoptosis in the Malignant Glioma
title Targeting Telomerase and ATRX/DAXX Inducing Tumor Senescence and Apoptosis in the Malignant Glioma
title_full Targeting Telomerase and ATRX/DAXX Inducing Tumor Senescence and Apoptosis in the Malignant Glioma
title_fullStr Targeting Telomerase and ATRX/DAXX Inducing Tumor Senescence and Apoptosis in the Malignant Glioma
title_full_unstemmed Targeting Telomerase and ATRX/DAXX Inducing Tumor Senescence and Apoptosis in the Malignant Glioma
title_short Targeting Telomerase and ATRX/DAXX Inducing Tumor Senescence and Apoptosis in the Malignant Glioma
title_sort targeting telomerase and atrx/daxx inducing tumor senescence and apoptosis in the malignant glioma
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6337644/
https://www.ncbi.nlm.nih.gov/pubmed/30625996
http://dx.doi.org/10.3390/ijms20010200
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