Open Access
Open access
Journal of Biomedical Science, volume 25, issue 1, publication number 22

Mechanisms of human telomerase reverse transcriptase (hTERT) regulation: clinical impacts in cancer

Ricardo Leao 1, 2, 3, 4
Joana Dias Apolonio 5, 6, 7
Donghyun Lee 2
Arnaldo Figueiredo 3, 4
Uri Tabori 2, 8
Pedro Castelo-Branco 5, 6, 7
Publication typeJournal Article
Publication date2018-03-12
scimago Q1
SJR2.606
CiteScore18.5
Impact factor9
ISSN10217770, 14230127
Molecular Biology
General Medicine
Cell Biology
Clinical Biochemistry
Pharmacology (medical)
Endocrinology, Diabetes and Metabolism
Biochemistry (medical)
Abstract
Limitless self-renewal is one of the hallmarks of cancer and is attained by telomere maintenance, essentially through telomerase (hTERT) activation. Transcriptional regulation of hTERT is believed to play a major role in telomerase activation in human cancers. The dominant interest in telomerase results from its role in cancer. The role of telomeres and telomere maintenance mechanisms is well established as a major driving force in generating chromosomal and genomic instability. Cancer cells have acquired the ability to overcome their fate of senescence via telomere length maintenance mechanisms, mainly by telomerase activation. hTERT expression is up-regulated in tumors via multiple genetic and epigenetic mechanisms including hTERT amplifications, hTERT structural variants, hTERT promoter mutations and epigenetic modifications through hTERT promoter methylation. Genetic (hTERT promoter mutations) and epigenetic (hTERT promoter methylation and miRNAs) events were shown to have clinical implications in cancers that depend on hTERT activation. Knowing that telomeres are crucial for cellular self-renewal, the mechanisms responsible for telomere maintenance have a crucial role in cancer diseases and might be important oncological biomarkers. Thus, rather than quantifying TERT expression and its correlation with telomerase activation, the discovery and the assessment of the mechanisms responsible for TERT upregulation offers important information that may be used for diagnosis, prognosis, and treatment monitoring in oncology. Furthermore, a better understanding of these mechanisms may promote their translation into effective targeted cancer therapies. Herein, we reviewed the underlying mechanisms of hTERT regulation, their role in oncogenesis, and the potential clinical applications in telomerase-dependent cancers.
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