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An Intronic Signal for Alternative Splicing in the Human Genome

An important level at which the expression of programmed cell death (PCD) genes is regulated is alternative splicing. Our previous work identified an intronic splicing regulatory element in caspase-2 (casp-2) gene. This 100-nucleotide intronic element, In100, consists of an upstream region containin...

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Autores principales: Havlioglu, Necat, Wang, Jun, Fushimi, Kazuo, Vibranovski, Maria D., Kan, Zhengyan, Gish, Warren, Fedorov, Alexei, Long, Manyuan, Wu, Jane Y.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2082412/
https://www.ncbi.nlm.nih.gov/pubmed/18043753
http://dx.doi.org/10.1371/journal.pone.0001246
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author Havlioglu, Necat
Wang, Jun
Fushimi, Kazuo
Vibranovski, Maria D.
Kan, Zhengyan
Gish, Warren
Fedorov, Alexei
Long, Manyuan
Wu, Jane Y.
author_facet Havlioglu, Necat
Wang, Jun
Fushimi, Kazuo
Vibranovski, Maria D.
Kan, Zhengyan
Gish, Warren
Fedorov, Alexei
Long, Manyuan
Wu, Jane Y.
author_sort Havlioglu, Necat
collection PubMed
description An important level at which the expression of programmed cell death (PCD) genes is regulated is alternative splicing. Our previous work identified an intronic splicing regulatory element in caspase-2 (casp-2) gene. This 100-nucleotide intronic element, In100, consists of an upstream region containing a decoy 3′ splice site and a downstream region containing binding sites for splicing repressor PTB. Based on the signal of In100 element in casp-2, we have detected the In100-like sequences as a family of sequence elements associated with alternative splicing in the human genome by using computational and experimental approaches. A survey of human genome reveals the presence of more than four thousand In100-like elements in 2757 genes. These In100-like elements tend to locate more frequent in intronic regions than exonic regions. EST analyses indicate that the presence of In100-like elements correlates with the skipping of their immediate upstream exons, with 526 genes showing exon skipping in such a manner. In addition, In100-like elements are found in several human caspase genes near exons encoding the caspase active domain. RT-PCR experiments show that these caspase genes indeed undergo alternative splicing in a pattern predicted to affect their functional activity. Together, these results suggest that the In100-like elements represent a family of intronic signals for alternative splicing in the human genome.
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spelling pubmed-20824122007-11-28 An Intronic Signal for Alternative Splicing in the Human Genome Havlioglu, Necat Wang, Jun Fushimi, Kazuo Vibranovski, Maria D. Kan, Zhengyan Gish, Warren Fedorov, Alexei Long, Manyuan Wu, Jane Y. PLoS One Research Article An important level at which the expression of programmed cell death (PCD) genes is regulated is alternative splicing. Our previous work identified an intronic splicing regulatory element in caspase-2 (casp-2) gene. This 100-nucleotide intronic element, In100, consists of an upstream region containing a decoy 3′ splice site and a downstream region containing binding sites for splicing repressor PTB. Based on the signal of In100 element in casp-2, we have detected the In100-like sequences as a family of sequence elements associated with alternative splicing in the human genome by using computational and experimental approaches. A survey of human genome reveals the presence of more than four thousand In100-like elements in 2757 genes. These In100-like elements tend to locate more frequent in intronic regions than exonic regions. EST analyses indicate that the presence of In100-like elements correlates with the skipping of their immediate upstream exons, with 526 genes showing exon skipping in such a manner. In addition, In100-like elements are found in several human caspase genes near exons encoding the caspase active domain. RT-PCR experiments show that these caspase genes indeed undergo alternative splicing in a pattern predicted to affect their functional activity. Together, these results suggest that the In100-like elements represent a family of intronic signals for alternative splicing in the human genome. Public Library of Science 2007-11-28 /pmc/articles/PMC2082412/ /pubmed/18043753 http://dx.doi.org/10.1371/journal.pone.0001246 Text en Havlioglu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Havlioglu, Necat
Wang, Jun
Fushimi, Kazuo
Vibranovski, Maria D.
Kan, Zhengyan
Gish, Warren
Fedorov, Alexei
Long, Manyuan
Wu, Jane Y.
An Intronic Signal for Alternative Splicing in the Human Genome
title An Intronic Signal for Alternative Splicing in the Human Genome
title_full An Intronic Signal for Alternative Splicing in the Human Genome
title_fullStr An Intronic Signal for Alternative Splicing in the Human Genome
title_full_unstemmed An Intronic Signal for Alternative Splicing in the Human Genome
title_short An Intronic Signal for Alternative Splicing in the Human Genome
title_sort intronic signal for alternative splicing in the human genome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2082412/
https://www.ncbi.nlm.nih.gov/pubmed/18043753
http://dx.doi.org/10.1371/journal.pone.0001246
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