Determining signalling nodes for apoptosis by a genetic high-throughput screen.

BACKGROUND:With the ever-increasing information emerging from the various sequencing and gene annotation projects, there is an urgent need to elucidate the cellular functions of the newly discovered genes. The genetically regulated cell suicide of apoptosis is especially suitable for such endeavours...

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Main Authors: Bevan Lin, Derek Huntley, Ghada Abuali, Sarah R Langley, George Sindelar, Enrico Petretto, Sarah Butcher, Stefan Grimm
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3178610?pdf=render
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spelling doaj-d6a80578a42f4ade9e87353c1eb30b8a2020-11-24T21:37:12ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0169e2502310.1371/journal.pone.0025023Determining signalling nodes for apoptosis by a genetic high-throughput screen.Bevan LinDerek HuntleyGhada AbualiSarah R LangleyGeorge SindelarEnrico PetrettoSarah ButcherStefan GrimmBACKGROUND:With the ever-increasing information emerging from the various sequencing and gene annotation projects, there is an urgent need to elucidate the cellular functions of the newly discovered genes. The genetically regulated cell suicide of apoptosis is especially suitable for such endeavours as it is governed by a vast number of factors. METHODOLOGY/PRINCIPAL FINDINGS:We have set up a high-throughput screen in 96-well microtiter plates for genes that induce apoptosis upon their individual transfection into human cells. Upon screening approximately 100,000 cDNA clones we determined 74 genes that initiate this cellular suicide programme. A thorough bioinformatics analysis of these genes revealed that 91% are novel apoptosis regulators. Careful sequence analysis and functional annotation showed that the apoptosis factors exhibit a distinct functional distribution that distinguishes the cell death process from other signalling pathways. While only a minority of classic signal transducers were determined, a substantial number of the genes fall into the transporter- and enzyme-category. The apoptosis factors are distributed throughout all cellular organelles and many signalling circuits, but one distinct signalling pathway connects at least some of the isolated genes. Comparisons with microarray data suggest that several genes are dysregulated in specific types of cancers and degenerative diseases. CONCLUSIONS/SIGNIFICANCE:Many unknown genes for cell death were revealed through our screen, supporting the enormous complexity of cell death regulation. Our results will serve as a repository for other researchers working with genomics data related to apoptosis or for those seeking to reveal novel signalling pathways for cell suicide.http://europepmc.org/articles/PMC3178610?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Bevan Lin
Derek Huntley
Ghada Abuali
Sarah R Langley
George Sindelar
Enrico Petretto
Sarah Butcher
Stefan Grimm
spellingShingle Bevan Lin
Derek Huntley
Ghada Abuali
Sarah R Langley
George Sindelar
Enrico Petretto
Sarah Butcher
Stefan Grimm
Determining signalling nodes for apoptosis by a genetic high-throughput screen.
PLoS ONE
author_facet Bevan Lin
Derek Huntley
Ghada Abuali
Sarah R Langley
George Sindelar
Enrico Petretto
Sarah Butcher
Stefan Grimm
author_sort Bevan Lin
title Determining signalling nodes for apoptosis by a genetic high-throughput screen.
title_short Determining signalling nodes for apoptosis by a genetic high-throughput screen.
title_full Determining signalling nodes for apoptosis by a genetic high-throughput screen.
title_fullStr Determining signalling nodes for apoptosis by a genetic high-throughput screen.
title_full_unstemmed Determining signalling nodes for apoptosis by a genetic high-throughput screen.
title_sort determining signalling nodes for apoptosis by a genetic high-throughput screen.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description BACKGROUND:With the ever-increasing information emerging from the various sequencing and gene annotation projects, there is an urgent need to elucidate the cellular functions of the newly discovered genes. The genetically regulated cell suicide of apoptosis is especially suitable for such endeavours as it is governed by a vast number of factors. METHODOLOGY/PRINCIPAL FINDINGS:We have set up a high-throughput screen in 96-well microtiter plates for genes that induce apoptosis upon their individual transfection into human cells. Upon screening approximately 100,000 cDNA clones we determined 74 genes that initiate this cellular suicide programme. A thorough bioinformatics analysis of these genes revealed that 91% are novel apoptosis regulators. Careful sequence analysis and functional annotation showed that the apoptosis factors exhibit a distinct functional distribution that distinguishes the cell death process from other signalling pathways. While only a minority of classic signal transducers were determined, a substantial number of the genes fall into the transporter- and enzyme-category. The apoptosis factors are distributed throughout all cellular organelles and many signalling circuits, but one distinct signalling pathway connects at least some of the isolated genes. Comparisons with microarray data suggest that several genes are dysregulated in specific types of cancers and degenerative diseases. CONCLUSIONS/SIGNIFICANCE:Many unknown genes for cell death were revealed through our screen, supporting the enormous complexity of cell death regulation. Our results will serve as a repository for other researchers working with genomics data related to apoptosis or for those seeking to reveal novel signalling pathways for cell suicide.
url http://europepmc.org/articles/PMC3178610?pdf=render
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