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RetroTector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences

BACKGROUND: The rapid accumulation of genomic information in databases necessitates rapid and specific algorithms for extracting biologically meaningful information. More or less complete retroviral sequences, also called proviral or endogenous retroviral sequences; ERVs, constitutes at least 5% of...

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Autores principales: Sperber, Göran, Lövgren, Anders, Eriksson, Nils-Einar, Benachenhou, Farid, Blomberg, Jonas
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2697651/
https://www.ncbi.nlm.nih.gov/pubmed/19534753
http://dx.doi.org/10.1186/1471-2105-10-S6-S4
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author Sperber, Göran
Lövgren, Anders
Eriksson, Nils-Einar
Benachenhou, Farid
Blomberg, Jonas
author_facet Sperber, Göran
Lövgren, Anders
Eriksson, Nils-Einar
Benachenhou, Farid
Blomberg, Jonas
author_sort Sperber, Göran
collection PubMed
description BACKGROUND: The rapid accumulation of genomic information in databases necessitates rapid and specific algorithms for extracting biologically meaningful information. More or less complete retroviral sequences, also called proviral or endogenous retroviral sequences; ERVs, constitutes at least 5% of vertebrate genomes. After infecting the host, these retroviruses have integrated in germ line cells, and have then been carried in genomes for at least several 100 million years. A better understanding of structure and function of these sequences can have profound biological and medical consequences. METHODS: RetroTector(© )(ReTe) is a platform-independent Java program for identification and characterization of proviral sequences in vertebrate genomes. The full ReTe requires a local installation with a MySQL database. Although not overly complicated, the installation may take some time. A "light" version of ReTe, (RetroTector online; ROL) which does not require specific installation procedures is provided, via the World Wide Web. RESULTS: ROL was implemented under the Batchelor web interface (A Lövgren et al). It allows both GenBank accession number, file and FASTA cut-and-paste admission of sequences (5 to 10 000 kilobases). Up to ten submissions can be done simultaneously, allowing batch analysis of <= 100 Megabases. Jobs are shown in an IP-number specific list. Results are text files, and can be viewed with the program, RetroTectorViewer.jar (at the same site), which has the full graphical capabilities of the basic ReTe program. A detailed analysis of any retroviral sequences found in the submitted sequence is graphically presented, exportable in standard formats. With the current server, a complete analysis of a 1 Megabase sequence is complete in 10 minutes. It is possible to mask nonretroviral repetitive sequences in the submitted sequence, using host genome specific "brooms", which increase specificity. DISCUSSION: Proviral sequences can be hard to recognize, especially if the integration occurred many million years ago. Precise delineation of LTR, gag, pro, pol and env can be difficult, requiring manual work. ROL is a way of simplifying these tasks. CONCLUSION: ROL provides 1. annotation and presentation of known retroviral sequences, 2. detection of proviral chains in unknown genomic sequences, with up to 100 Mbase per submission.
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spelling pubmed-26976512009-06-16 RetroTector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences Sperber, Göran Lövgren, Anders Eriksson, Nils-Einar Benachenhou, Farid Blomberg, Jonas BMC Bioinformatics Proceedings BACKGROUND: The rapid accumulation of genomic information in databases necessitates rapid and specific algorithms for extracting biologically meaningful information. More or less complete retroviral sequences, also called proviral or endogenous retroviral sequences; ERVs, constitutes at least 5% of vertebrate genomes. After infecting the host, these retroviruses have integrated in germ line cells, and have then been carried in genomes for at least several 100 million years. A better understanding of structure and function of these sequences can have profound biological and medical consequences. METHODS: RetroTector(© )(ReTe) is a platform-independent Java program for identification and characterization of proviral sequences in vertebrate genomes. The full ReTe requires a local installation with a MySQL database. Although not overly complicated, the installation may take some time. A "light" version of ReTe, (RetroTector online; ROL) which does not require specific installation procedures is provided, via the World Wide Web. RESULTS: ROL was implemented under the Batchelor web interface (A Lövgren et al). It allows both GenBank accession number, file and FASTA cut-and-paste admission of sequences (5 to 10 000 kilobases). Up to ten submissions can be done simultaneously, allowing batch analysis of <= 100 Megabases. Jobs are shown in an IP-number specific list. Results are text files, and can be viewed with the program, RetroTectorViewer.jar (at the same site), which has the full graphical capabilities of the basic ReTe program. A detailed analysis of any retroviral sequences found in the submitted sequence is graphically presented, exportable in standard formats. With the current server, a complete analysis of a 1 Megabase sequence is complete in 10 minutes. It is possible to mask nonretroviral repetitive sequences in the submitted sequence, using host genome specific "brooms", which increase specificity. DISCUSSION: Proviral sequences can be hard to recognize, especially if the integration occurred many million years ago. Precise delineation of LTR, gag, pro, pol and env can be difficult, requiring manual work. ROL is a way of simplifying these tasks. CONCLUSION: ROL provides 1. annotation and presentation of known retroviral sequences, 2. detection of proviral chains in unknown genomic sequences, with up to 100 Mbase per submission. BioMed Central 2009-06-16 /pmc/articles/PMC2697651/ /pubmed/19534753 http://dx.doi.org/10.1186/1471-2105-10-S6-S4 Text en Copyright © 2009 Sperber et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Proceedings
Sperber, Göran
Lövgren, Anders
Eriksson, Nils-Einar
Benachenhou, Farid
Blomberg, Jonas
RetroTector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences
title RetroTector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences
title_full RetroTector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences
title_fullStr RetroTector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences
title_full_unstemmed RetroTector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences
title_short RetroTector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences
title_sort retrotector online, a rational tool for analysis of retroviral elements in small and medium size vertebrate genomic sequences
topic Proceedings
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2697651/
https://www.ncbi.nlm.nih.gov/pubmed/19534753
http://dx.doi.org/10.1186/1471-2105-10-S6-S4
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