Literature DB >> 23906716

Position-effect variegation, heterochromatin formation, and gene silencing in Drosophila.

Sarah C R Elgin1, Gunter Reuter.   

Abstract

Position-effect variegation (PEV) results when a gene normally in euchromatin is juxtaposed with heterochromatin by rearrangement or transposition. When heterochromatin packaging spreads across the heterochromatin/euchromatin border, it causes transcriptional silencing in a stochastic pattern. PEV is intensely studied in Drosophila using the white gene. Screens for dominant mutations that suppress or enhance white variegation have identified many conserved epigenetic factors, including the histone H3 lysine 9 methyltransferase SU(VAR)3-9. Heterochromatin protein HP1a binds H3K9me2/3 and interacts with SU(VAR)3-9, creating a core memory system. Genetic, molecular, and biochemical analysis of PEV in Drosophila has contributed many key findings concerning establishment and maintenance of heterochromatin with concomitant gene silencing.

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Year:  2013        PMID: 23906716      PMCID: PMC3721279          DOI: 10.1101/cshperspect.a017780

Source DB:  PubMed          Journal:  Cold Spring Harb Perspect Biol        ISSN: 1943-0264            Impact factor:   10.005


  133 in total

1.  The small RNA profile during Drosophila melanogaster development.

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Journal:  Dev Cell       Date:  2003-08       Impact factor: 12.270

2.  Separation of stem cell maintenance and transposon silencing functions of Piwi protein.

Authors:  Mikhail S Klenov; Olesya A Sokolova; Evgeny Y Yakushev; Anastasia D Stolyarenko; Elena A Mikhaleva; Sergey A Lavrov; Vladimir A Gvozdev
Journal:  Proc Natl Acad Sci U S A       Date:  2011-11-07       Impact factor: 11.205

3.  An investigation of heterochromatin domains on the fourth chromosome of Drosophila melanogaster.

Authors:  Nicole C Riddle; Wilson Leung; Karmella A Haynes; Howard Granok; Jo Wuller; Sarah C R Elgin
Journal:  Genetics       Date:  2008-02-01       Impact factor: 4.562

Review 4.  Dosage-dependent modification of position-effect variegation in Drosophila.

Authors:  S Henikoff
Journal:  Bioessays       Date:  1996-05       Impact factor: 4.345

5.  Somatic reversion of chromosomal position effects in Drosophila melanogaster.

Authors:  K Ahmad; K G Golic
Journal:  Genetics       Date:  1996-10       Impact factor: 4.562

Review 6.  Epigenetic regulation in plants.

Authors:  Craig S Pikaard; Ortrun Mittelsten Scheid
Journal:  Cold Spring Harb Perspect Biol       Date:  2014-12-01       Impact factor: 10.005

7.  Expression and functional analysis of three isoforms of human heterochromatin-associated protein HP1 in Drosophila.

Authors:  J Ma; K K Hwang; H J Worman; J C Courvalin; J C Eissenberg
Journal:  Chromosoma       Date:  2001-02       Impact factor: 4.316

8.  HP1 binding to chromatin methylated at H3K9 is enhanced by auxiliary factors.

Authors:  Ragnhild Eskeland; Anton Eberharter; Axel Imhof
Journal:  Mol Cell Biol       Date:  2006-11-13       Impact factor: 4.272

9.  Drosophila PIWI associates with chromatin and interacts directly with HP1a.

Authors:  Brent Brower-Toland; Seth D Findley; Ling Jiang; Li Liu; Hang Yin; Monica Dus; Pei Zhou; Sarah C R Elgin; Haifan Lin
Journal:  Genes Dev       Date:  2007-09-15       Impact factor: 11.361

10.  Epigenetic regulation of the Drosophila chromosome 4 by the histone H3K9 methyltransferase dSETDB1.

Authors:  Tsai-Yu Tzeng; Chi-Hua Lee; Li-Wei Chan; C-K James Shen
Journal:  Proc Natl Acad Sci U S A       Date:  2007-07-25       Impact factor: 11.205

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  209 in total

1.  The Differences Between Cis- and Trans-Gene Inactivation Caused by Heterochromatin in Drosophila.

Authors:  Yuriy A Abramov; Aleksei S Shatskikh; Oksana G Maksimenko; Silvia Bonaccorsi; Vladimir A Gvozdev; Sergey A Lavrov
Journal:  Genetics       Date:  2015-10-23       Impact factor: 4.562

2.  Targeting of P-Element Reporters to Heterochromatic Domains by Transposable Element 1360 in Drosophila melanogaster.

Authors:  Kathryn L Huisinga; Nicole C Riddle; Wilson Leung; Shachar Shimonovich; Stephen McDaniel; Alejandra Figueroa-Clarevega; Sarah C R Elgin
Journal:  Genetics       Date:  2015-12-17       Impact factor: 4.562

3.  Phase separation drives heterochromatin domain formation.

Authors:  Amy R Strom; Alexander V Emelyanov; Mustafa Mir; Dmitry V Fyodorov; Xavier Darzacq; Gary H Karpen
Journal:  Nature       Date:  2017-06-21       Impact factor: 49.962

Review 4.  Epigenetics in Saccharomyces cerevisiae.

Authors:  Michael Grunstein; Susan M Gasser
Journal:  Cold Spring Harb Perspect Biol       Date:  2013-07-01       Impact factor: 10.005

Review 5.  Nucleosome remodeling and epigenetics.

Authors:  Peter B Becker; Jerry L Workman
Journal:  Cold Spring Harb Perspect Biol       Date:  2013-09-01       Impact factor: 10.005

6.  Mitotic misbehavior of a Drosophila melanogaster satellite in ring chromosomes: insights into intragenomic conflict among heterochromatic sequences.

Authors:  Patrick M Ferree
Journal:  Fly (Austin)       Date:  2014       Impact factor: 2.160

Review 7.  Epigenetic regulation in plants.

Authors:  Craig S Pikaard; Ortrun Mittelsten Scheid
Journal:  Cold Spring Harb Perspect Biol       Date:  2014-12-01       Impact factor: 10.005

Review 8.  HP1a: a structural chromosomal protein regulating transcription.

Authors:  Joel C Eissenberg; Sarah C R Elgin
Journal:  Trends Genet       Date:  2014-02-17       Impact factor: 11.639

Review 9.  Roles for MDC1 in cancer development and treatment.

Authors:  Sophie E Ruff; Susan K Logan; Michael J Garabedian; Tony T Huang
Journal:  DNA Repair (Amst)       Date:  2020-08-11

10.  A massively parallel reporter assay dissects the influence of chromatin structure on cis-regulatory activity.

Authors:  Brett B Maricque; Hemangi G Chaudhari; Barak A Cohen
Journal:  Nat Biotechnol       Date:  2018-11-19       Impact factor: 54.908

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