Literature DB >> 16132810

Two retrotransposons maintain telomeres in Drosophila.

M-L Pardue1, S Rashkova, E Casacuberta, P G DeBaryshe, J A George, K L Traverse.   

Abstract

Telomeres across the genus Drosophila are maintained, not by telomerase, but by two non-LTR retrotransposons, HeT-A and TART, that transpose specifically to chromosome ends. Successive transpositions result in long head-to-tail arrays of these elements. Thus Drosophila telomeres, like those produced by telomerase, consist of repeated sequences reverse transcribed from RNA templates. The Drosophila repeats, complete and 5'-truncated copies of HeT-A and TART, are more complex than telomerase repeats; nevertheless, these evolutionary variants have functional similarities to the more common telomeres. Like other telomeres, the Drosophila arrays are dynamic, fluctuating around an average length that can be changed by changes in the genetic background. Several proteins that interact with telomeres in other species have been found to have homologues that interact with Drosophila telomeres. Although they have hallmarks of non-LTR retrotransposons, HeT-A and TART appear to have a special relationship to Drosophila. Their Gag proteins are efficiently transported into diploid nuclei where HeT-A Gag recruits TART Gag to chromosome ends. Gags of other non-LTR elements remain predominantly in the cytoplasm. These studies provide intriguing evolutionary links between telomeres and retrotransposable elements.

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Year:  2005        PMID: 16132810      PMCID: PMC1255937          DOI: 10.1007/s10577-005-0993-6

Source DB:  PubMed          Journal:  Chromosome Res        ISSN: 0967-3849            Impact factor:   5.239


  37 in total

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7.  TAHRE, a novel telomeric retrotransposon from Drosophila melanogaster, reveals the origin of Drosophila telomeres.

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Journal:  Mol Biol Evol       Date:  2004-06-02       Impact factor: 16.240

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Journal:  Mol Cell Biol       Date:  1993-03       Impact factor: 4.272

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Authors:  José P Abad; Beatriz De Pablos; Kazutoyo Osoegawa; Pieter J De Jong; Antonia Martín-Gallardo; Alfredo Villasante
Journal:  Mol Biol Evol       Date:  2004-05-26       Impact factor: 16.240

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  38 in total

1.  Differential maintenance of DNA sequences in telomeric and centromeric heterochromatin.

Authors:  P G DeBaryshe; Mary-Lou Pardue
Journal:  Genetics       Date:  2010-11-01       Impact factor: 4.562

Review 2.  Drosophila telomeres: an exception providing new insights.

Authors:  James M Mason; Radmila Capkova Frydrychova; Harald Biessmann
Journal:  Bioessays       Date:  2008-01       Impact factor: 4.345

3.  zucchini and squash encode two putative nucleases required for rasiRNA production in the Drosophila germline.

Authors:  Attilio Pane; Kristina Wehr; Trudi Schüpbach
Journal:  Dev Cell       Date:  2007-06       Impact factor: 12.270

4.  Cooperative role of the MHR and the CA dimerization helix in the maturation of the functional retrovirus capsid.

Authors:  Parvez M Lokhandwala; Tam-Linh N Nguyen; J Bradford Bowzard; Rebecca C Craven
Journal:  Virology       Date:  2008-04-22       Impact factor: 3.616

5.  Chromodomains and LTR retrotransposons in plants.

Authors:  Olga Novikova
Journal:  Commun Integr Biol       Date:  2009

6.  New insights into the nuclear localization of retroviral Gag proteins.

Authors:  Leslie J Parent
Journal:  Nucleus       Date:  2011 Mar-Apr       Impact factor: 4.197

7.  Long-distance interactions between regulatory elements are suppressed at the end of a terminally deficient chromosome in Drosophila melanogaster.

Authors:  Larisa Melnikova; Inna Biryukova; Tatyana Kan; Pavel Georgiev
Journal:  Chromosoma       Date:  2007-09-18       Impact factor: 4.316

8.  Drosophila telomeric retrotransposons derived from an ancestral element that was recruited to replace telomerase.

Authors:  Alfredo Villasante; José P Abad; Rosario Planelló; María Méndez-Lago; Susan E Celniker; Beatriz de Pablos
Journal:  Genome Res       Date:  2007-11-07       Impact factor: 9.043

9.  Transcriptional activity of the telomeric retrotransposon HeT-A in Drosophila melanogaster is stimulated as a consequence of subterminal deficiencies at homologous and nonhomologous telomeres.

Authors:  Radmila Capkova Frydrychova; Harald Biessmann; Alexander Y Konev; Mikhail D Golubovsky; Jessica Johnson; Trevor K Archer; James M Mason
Journal:  Mol Cell Biol       Date:  2007-04-30       Impact factor: 4.272

Review 10.  Regulation of telomere length in Drosophila.

Authors:  R Capkova Frydrychova; H Biessmann; J M Mason
Journal:  Cytogenet Genome Res       Date:  2009-01-30       Impact factor: 1.636

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