Telomere Q-PNA-FISH--reliable results from stochastic signals.

Structural and functional analysis of telomeres is very important for understanding basic biological functions such as genome stability, cell growth control, senescence and aging. Recently, serious concerns have been raised regarding the reliability of current telomere measurement methods such as So...

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Main Authors: Andrea Cukusic Kalajzic, Nikolina Skrobot Vidacek, Miljenko Huzak, Milena Ivankovic, Ivica Rubelj
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3958560?pdf=render
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spelling doaj-13c5c352b14b4ca1a3d17e4d5764d5a12020-11-25T02:15:02ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0193e9255910.1371/journal.pone.0092559Telomere Q-PNA-FISH--reliable results from stochastic signals.Andrea Cukusic KalajzicNikolina Skrobot VidacekMiljenko HuzakMilena IvankovicIvica RubeljStructural and functional analysis of telomeres is very important for understanding basic biological functions such as genome stability, cell growth control, senescence and aging. Recently, serious concerns have been raised regarding the reliability of current telomere measurement methods such as Southern blot and quantitative polymerase chain reaction. Since telomere length is associated with age related pathologies, including cardiovascular disease and cancer, both at the individual and population level, accurate interpretation of measured results is a necessity. The telomere Q-PNA-FISH technique has been widely used in these studies as well as in commercial analysis for the general population. A hallmark of telomere Q-PNA-FISH is the wide variation among telomere signals which has a major impact on obtained results. In the present study we introduce a specific mathematical and statistical analysis of sister telomere signals during cell culture senescence which enabled us to identify high regularity in their variations. This phenomenon explains the reproducibility of results observed in numerous telomere studies when the Q-PNA-FISH technique is used. In addition, we discuss the molecular mechanisms which probably underlie the observed telomere behavior.http://europepmc.org/articles/PMC3958560?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Andrea Cukusic Kalajzic
Nikolina Skrobot Vidacek
Miljenko Huzak
Milena Ivankovic
Ivica Rubelj
spellingShingle Andrea Cukusic Kalajzic
Nikolina Skrobot Vidacek
Miljenko Huzak
Milena Ivankovic
Ivica Rubelj
Telomere Q-PNA-FISH--reliable results from stochastic signals.
PLoS ONE
author_facet Andrea Cukusic Kalajzic
Nikolina Skrobot Vidacek
Miljenko Huzak
Milena Ivankovic
Ivica Rubelj
author_sort Andrea Cukusic Kalajzic
title Telomere Q-PNA-FISH--reliable results from stochastic signals.
title_short Telomere Q-PNA-FISH--reliable results from stochastic signals.
title_full Telomere Q-PNA-FISH--reliable results from stochastic signals.
title_fullStr Telomere Q-PNA-FISH--reliable results from stochastic signals.
title_full_unstemmed Telomere Q-PNA-FISH--reliable results from stochastic signals.
title_sort telomere q-pna-fish--reliable results from stochastic signals.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Structural and functional analysis of telomeres is very important for understanding basic biological functions such as genome stability, cell growth control, senescence and aging. Recently, serious concerns have been raised regarding the reliability of current telomere measurement methods such as Southern blot and quantitative polymerase chain reaction. Since telomere length is associated with age related pathologies, including cardiovascular disease and cancer, both at the individual and population level, accurate interpretation of measured results is a necessity. The telomere Q-PNA-FISH technique has been widely used in these studies as well as in commercial analysis for the general population. A hallmark of telomere Q-PNA-FISH is the wide variation among telomere signals which has a major impact on obtained results. In the present study we introduce a specific mathematical and statistical analysis of sister telomere signals during cell culture senescence which enabled us to identify high regularity in their variations. This phenomenon explains the reproducibility of results observed in numerous telomere studies when the Q-PNA-FISH technique is used. In addition, we discuss the molecular mechanisms which probably underlie the observed telomere behavior.
url http://europepmc.org/articles/PMC3958560?pdf=render
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AT milenaivankovic telomereqpnafishreliableresultsfromstochasticsignals
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