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PUBMED FOR HANDHELDS

Journal Abstract Search


144 related items for PubMed ID: 29702639

  • 1. A Caenorhabditis elegans protein with a PRDM9-like SET domain localizes to chromatin-associated foci and promotes spermatocyte gene expression, sperm production and fertility.
    Engert CG, Droste R, van Oudenaarden A, Horvitz HR.
    PLoS Genet; 2018 Apr; 14(4):e1007295. PubMed ID: 29702639
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  • 2. Members of the H3K4 trimethylation complex regulate lifespan in a germline-dependent manner in C. elegans.
    Greer EL, Maures TJ, Hauswirth AG, Green EM, Leeman DS, Maro GS, Han S, Banko MR, Gozani O, Brunet A.
    Nature; 2010 Jul 15; 466(7304):383-7. PubMed ID: 20555324
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  • 3. Differential localization and independent acquisition of the H3K9me2 and H3K9me3 chromatin modifications in the Caenorhabditis elegans adult germ line.
    Bessler JB, Andersen EC, Villeneuve AM.
    PLoS Genet; 2010 Jan 22; 6(1):e1000830. PubMed ID: 20107519
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  • 4. Decoupling the downstream effects of germline nuclear RNAi reveals that H3K9me3 is dispensable for heritable RNAi and the maintenance of endogenous siRNA-mediated transcriptional silencing in Caenorhabditis elegans.
    Kalinava N, Ni JZ, Peterman K, Chen E, Gu SG.
    Epigenetics Chromatin; 2017 Jan 22; 10():6. PubMed ID: 28228846
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  • 5. MES-4: an autosome-associated histone methyltransferase that participates in silencing the X chromosomes in the C. elegans germ line.
    Bender LB, Suh J, Carroll CR, Fong Y, Fingerman IM, Briggs SD, Cao R, Zhang Y, Reinke V, Strome S.
    Development; 2006 Oct 22; 133(19):3907-17. PubMed ID: 16968818
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  • 6. Ancestral function of Inhibitors-of-kappaB regulates Caenorhabditis elegans development.
    Brena D, Bertran J, Porta-de-la-Riva M, Guillén Y, Cornes E, Kukhtar D, Campos-Vicens L, Fernández L, Pecharroman I, García-López A, Islam ABMMK, Marruecos L, Bigas A, Cerón J, Espinosa L.
    Sci Rep; 2020 Sep 30; 10(1):16153. PubMed ID: 32999373
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  • 7. The C. elegans SET-2/SET1 histone H3 Lys4 (H3K4) methyltransferase preserves genome stability in the germline.
    Herbette M, Mercier MG, Michal F, Cluet D, Burny C, Yvert G, Robert VJ, Palladino F.
    DNA Repair (Amst); 2017 Sep 30; 57():139-150. PubMed ID: 28779964
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  • 12. Drosophila dany is essential for transcriptional control and nuclear architecture in spermatocytes.
    Trost M, Blattner AC, Leo S, Lehner CF.
    Development; 2016 Jul 15; 143(14):2664-76. PubMed ID: 27436041
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  • 14. Antagonism between MES-4 and Polycomb repressive complex 2 promotes appropriate gene expression in C. elegans germ cells.
    Gaydos LJ, Rechtsteiner A, Egelhofer TA, Carroll CR, Strome S.
    Cell Rep; 2012 Nov 29; 2(5):1169-77. PubMed ID: 23103171
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  • 15. Regulation of the different chromatin states of autosomes and X chromosomes in the germ line of C. elegans.
    Fong Y, Bender L, Wang W, Strome S.
    Science; 2002 Jun 21; 296(5576):2235-8. PubMed ID: 12077420
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  • 16. Regulated nuclear accumulation of a histone methyltransferase times the onset of heterochromatin formation in C. elegans embryos.
    Mutlu B, Chen HM, Moresco JJ, Orelo BD, Yang B, Gaspar JM, Keppler-Ross S, Yates JR, Hall DH, Maine EM, Mango SE.
    Sci Adv; 2018 Aug 21; 4(8):eaat6224. PubMed ID: 30140741
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  • 17. MORC-1 Integrates Nuclear RNAi and Transgenerational Chromatin Architecture to Promote Germline Immortality.
    Weiser NE, Yang DX, Feng S, Kalinava N, Brown KC, Khanikar J, Freeberg MA, Snyder MJ, Csankovszki G, Chan RC, Gu SG, Montgomery TA, Jacobsen SE, Kim JK.
    Dev Cell; 2017 May 22; 41(4):408-423.e7. PubMed ID: 28535375
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  • 20. CSR-1 and P granules suppress sperm-specific transcription in the C. elegans germline.
    Campbell AC, Updike DL.
    Development; 2015 May 15; 142(10):1745-55. PubMed ID: 25968310
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