Generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.

Understanding the dynamic relationship between components of a system or pathway at the individual cell level is a current challenge. To address this, we developed an approach that allows simultaneous tracking of several endogenous proteins of choice within individual living human cells. The approac...

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Main Authors: Irina Issaeva, Ariel A Cohen, Eran Eden, Cellina Cohen-Saidon, Tamar Danon, Lydia Cohen, Uri Alon
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2958823?pdf=render
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spelling doaj-9671adcdd73b4f4487e5742b1426b0092020-11-25T02:16:00ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-01510e1352410.1371/journal.pone.0013524Generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.Irina IssaevaAriel A CohenEran EdenCellina Cohen-SaidonTamar DanonLydia CohenUri AlonUnderstanding the dynamic relationship between components of a system or pathway at the individual cell level is a current challenge. To address this, we developed an approach that allows simultaneous tracking of several endogenous proteins of choice within individual living human cells. The approach is based on fluorescent tagging of proteins at their native locus by directed gene targeting. A fluorescent tag-encoding DNA is introduced as a new exon into the intronic region of the gene of interest, resulting in expression of a full-length fluorescently tagged protein. We used this approach to establish human cell lines simultaneously expressing two components of a major antioxidant defense system, thioredoxin 1 (Trx) and thioredoxin reductase 1 (TrxR1), labeled with CFP and YFP, respectively. We find that the distributions of both proteins between nuclear and cytoplasmic compartments were highly variable between cells. However, the two proteins did not vary independently of each other: protein levels of Trx and TrxR1 in both the whole cell and the nucleus were substantially correlated. We further find that in response to a stress-inducing drug (CPT), both Trx and TrxR1 accumulated in the nuclei in a manner that was highly temporally correlated. This accumulation considerably reduced cell-to-cell variability in nuclear content of both proteins, suggesting a uniform response of the thioredoxin system to stress. These results indicate that Trx and TrxR1 act in concert in response to stress in regard to both time course and variability. Thus, our approach provides an efficient tool for studying dynamic relationship between components of systems of interest at a single-cell level.http://europepmc.org/articles/PMC2958823?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Irina Issaeva
Ariel A Cohen
Eran Eden
Cellina Cohen-Saidon
Tamar Danon
Lydia Cohen
Uri Alon
spellingShingle Irina Issaeva
Ariel A Cohen
Eran Eden
Cellina Cohen-Saidon
Tamar Danon
Lydia Cohen
Uri Alon
Generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.
PLoS ONE
author_facet Irina Issaeva
Ariel A Cohen
Eran Eden
Cellina Cohen-Saidon
Tamar Danon
Lydia Cohen
Uri Alon
author_sort Irina Issaeva
title Generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.
title_short Generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.
title_full Generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.
title_fullStr Generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.
title_full_unstemmed Generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.
title_sort generation of double-labeled reporter cell lines for studying co-dynamics of endogenous proteins in individual human cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-01-01
description Understanding the dynamic relationship between components of a system or pathway at the individual cell level is a current challenge. To address this, we developed an approach that allows simultaneous tracking of several endogenous proteins of choice within individual living human cells. The approach is based on fluorescent tagging of proteins at their native locus by directed gene targeting. A fluorescent tag-encoding DNA is introduced as a new exon into the intronic region of the gene of interest, resulting in expression of a full-length fluorescently tagged protein. We used this approach to establish human cell lines simultaneously expressing two components of a major antioxidant defense system, thioredoxin 1 (Trx) and thioredoxin reductase 1 (TrxR1), labeled with CFP and YFP, respectively. We find that the distributions of both proteins between nuclear and cytoplasmic compartments were highly variable between cells. However, the two proteins did not vary independently of each other: protein levels of Trx and TrxR1 in both the whole cell and the nucleus were substantially correlated. We further find that in response to a stress-inducing drug (CPT), both Trx and TrxR1 accumulated in the nuclei in a manner that was highly temporally correlated. This accumulation considerably reduced cell-to-cell variability in nuclear content of both proteins, suggesting a uniform response of the thioredoxin system to stress. These results indicate that Trx and TrxR1 act in concert in response to stress in regard to both time course and variability. Thus, our approach provides an efficient tool for studying dynamic relationship between components of systems of interest at a single-cell level.
url http://europepmc.org/articles/PMC2958823?pdf=render
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