Previous Article
Molecular and Cellular Biology, May 2002, p. 3204-3218, Vol. 22, No. 9
0270-7306/02/$04.00+0 DOI: 10.1128/MCB.22.9.3204-3218.2002
Copyright © 2002, American Society for Microbiology. All Rights Reserved.
Heterochromatin Protein 1 Is Involved in Control of Telomere Elongation in Drosophila melanogaster
Mikhail Savitsky, Oksana Kravchuk, Larisa Melnikova, and Pavel Georgiev*
Department of Control of Genetic Processes, Institute of Gene Biology, Russian Academy of Sciences, 117334 Moscow, Russia
Received 23 October 2001/
Returned for modification 28 November 2001/
Accepted 31 January 2002
Telomeres of Drosophila melanogaster contain arrays of the retrotransposon-like elements HeT-A and TART. Their transposition to broken chromosome ends has been implicated in chromosome healing and telomere elongation. We have developed a genetic system which enables the determination of the frequency of telomere elongation events and their mechanism. The frequency differs among lines with different genotypes, suggesting that several genes are in control. Here we show that the Su(var)2-5 gene encoding heterochromatin protein 1 (HP1) is involved in regulation of telomere length. Different Su(var)2-5 mutations in the heterozygous state increase the frequency of HeT-A and TART attachment to the broken chromosome end by more than a hundred times. The attachment occurs through either HeT-A/TART transposition or recombination with other telomeres. Terminal DNA elongation by gene conversion is greatly enhanced by Su(var)2-5 mutations only if the template for DNA synthesis is on the same chromosome but not on the homologous chromosome. The Drosophila lines bearing the Su(var)2-5 mutations maintain extremely long telomeres consisting of HeT-A and TART for many generations. Thus, HP1 plays an important role in the control of telomere elongation in D. melanogaster.
* Corresponding author. Mailing address: Institute of Gene Biology, Russian Academy of Sciences, 34/5 Vavilov St., 117334 Moscow, Russia. Phone: 7-095-1359734. Fax: 7-095-1354105. E-mail:
pgeorg{at}mx.ibg.relarn.ru or gpg@mx.ibg.relarn.ru.
Molecular and Cellular Biology, May 2002, p. 3204-3218, Vol. 22, No. 9
0022-538X/02/$04.00+0 DOI: 10.1128/MCB.22.9.3204-3218.2002
Copyright © 2002, American Society for Microbiology. All Rights Reserved.
This article has been cited by other articles:
-
Frydrychova, R. C., Mason, J. M., Archer, T. K.
(2008). HP1 Is Distributed Within Distinct Chromatin Domains at Drosophila Telomeres. Genetics
180: 121-131
[Abstract]
[Full Text]
-
Shpiz, S., Kwon, D., Uneva, A., Kim, M., Klenov, M., Rozovsky, Y., Georgiev, P., Savitsky, M., Kalmykova, A.
(2007). Characterization of Drosophila Telomeric Retroelement TAHRE: Transcription, Transpositions, and RNAi-based Regulation of Expression. Mol Biol Evol
24: 2535-2545
[Abstract]
[Full Text]
-
Klenov, M. S., Lavrov, S. A., Stolyarenko, A. D., Ryazansky, S. S., Aravin, A. A., Tuschl, T., Gvozdev, V. A.
(2007). Repeat-associated siRNAs cause chromatin silencing of retrotransposons in the Drosophila melanogaster germline. Nucleic Acids Res
0: gkm576v1-9
[Abstract]
[Full Text]
-
Simmons, M. J., Ryzek, D.-F., Lamour, C., Goodman, J. W., Kummer, N. E., Merriman, P. J.
(2007). Cytotype Regulation by Telomeric P Elements in Drosophila melanogaster: Evidence for Involvement of an RNA Interference Gene. Genetics
176: 1945-1955
[Abstract]
[Full Text]
-
Frydrychova, R. C., Biessmann, H., Konev, A. Y., Golubovsky, M. D., Johnson, J., Archer, T. K., Mason, J. M.
(2007). Transcriptional Activity of the Telomeric Retrotransposon HeT-A in Drosophila melanogaster Is Stimulated as a Consequence of Subterminal Deficiencies at Homologous and Nonhomologous Telomeres. Mol. Cell. Biol.
27: 4991-5001
[Abstract]
[Full Text]
-
George, J. A., DeBaryshe, P. G., Traverse, K. L., Celniker, S. E., Pardue, M.-L.
(2006). Genomic organization of the Drosophila telomere retrotransposable elements. Genome Res
16: 1231-1240
[Abstract]
[Full Text]
-
Savitsky, M., Kwon, D., Georgiev, P., Kalmykova, A., Gvozdev, V.
(2006). Telomere elongation is under the control of the RNAi-based mechanism in the Drosophila germline. Genes Dev.
20: 345-354
[Abstract]
[Full Text]
-
Andreyeva, E. N., Belyaeva, E. S., Semeshin, V. F., Pokholkova, G. V., Zhimulev, I. F.
(2005). Three distinct chromatin domains in telomere ends of polytene chromosomes in Drosophila melanogaster Tel mutants. J. Cell Sci.
118: 5465-5477
[Abstract]
[Full Text]
-
Biessmann, H., Prasad, S., Semeshin, V. F., Andreyeva, E. N., Nguyen, Q., Walter, M. F., Mason, J. M.
(2005). Two Distinct Domains in Drosophila melanogaster Telomeres. Genetics
171: 1767-1777
[Abstract]
[Full Text]
-
Bi, X., Srikanta, D., Fanti, L., Pimpinelli, S., Badugu, R., Kellum, R., Rong, Y. S.
(2005). Drosophila ATM and ATR checkpoint kinases control partially redundant pathways for telomere maintenance. Proc. Natl. Acad. Sci. USA
102: 15167-15172
[Abstract]
[Full Text]
-
Haley, K. J., Stuart, J. R., Raymond, J. D., Niemi, J. B., Simmons, M. J.
(2005). Impairment of Cytotype Regulation of P-Element Activity in Drosophila melanogaster by Mutations in the Su(var)205 Gene. Genetics
171: 583-595
[Abstract]
[Full Text]
-
Melnikova, L., Biessmann, H., Georgiev, P.
(2005). The Ku Protein Complex Is Involved in Length Regulation of Drosophila Telomeres. Genetics
170: 221-235
[Abstract]
[Full Text]
-
Mason, J. M., Ransom, J., Konev, A. Y.
(2004). A Deficiency Screen for Dominant Suppressors of Telomeric Silencing in Drosophila. Genetics
168: 1353-1370
[Abstract]
[Full Text]
-
Blasco, M. A.
(2004). Telomere epigenetics: a higher-order control of telomere length in mammalian cells. Carcinogenesis
25: 1083-1087
[Abstract]
[Full Text]
-
Savitsky, M., Kahn, T., Pomerantseva, E., Georgiev, P.
(2003). Transvection at the End of the Truncated Chromosome in Drosophila melanogaster. Genetics
163: 1375-1387
[Abstract]
[Full Text]
-
Mason, J. M., Konev, A. Y., Golubovsky, M. D., Biessmann, H.
(2003). Cis- and trans-acting Influences on Telomeric Position Effect in Drosophila melanogaster Detected With a Subterminal Transgene. Genetics
163: 917-930
[Abstract]
[Full Text]
-
Rashkova, S., Karam, S. E., Kellum, R., Pardue, M.-L.
(2002). Gag proteins of the two Drosophila telomeric retrotransposons are targeted to chromosome ends. JCB
159: 397-402
[Abstract]
[Full Text]
-
Melnikova, L., Georgiev, P.
(2002). Enhancer of terminal gene conversion, a New Mutation in Drosophila melanogaster That Induces Telomere Elongation by Gene Conversion. Genetics
162: 1301-1312
[Abstract]
[Full Text]