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Biorxiv : the Preprint Server for Biology|March 31, 2025
Direct cell-to-cell transmission of retrotransposonsMaya Voichek, Andreas Bernhard, Maria Novatchkova, et al.The EMBO Journal|August 25, 2011
A systematic analysis of Drosophila TUDOR domain-containing proteins identifies Vreteno and the Tdrd12 family as essential primary piRNA pathway factorsDominik Handler, Daniel Olivieri, Maria Novatchkova, et al.Nucleic Acids Research|June 5, 2020
A universal method for the rapid isolation of all known classes of functional silencing small RNAsThomas Grentzinger, Stefan Oberlin, Gregory Schott, et al.Molecular Cell|September 5, 2025
Target RNA recognition drives PIWI∗ complex assembly for transposon silencingJúlia Portell-Montserrat, Laszlo Tirian, Changwei Yu, et al.Trends in Genetics : TIG|October 12, 2010
The piRNA pathway: a fly's perspective on the guardian of the genomeKirsten-André Senti, Julius BrenneckeGenome Biology|September 4, 2003
Towards a complete description of the microRNA complement of animal genomesJulius Brennecke, Stephen M CohenDevelopmental Cell|March 26, 2015
Pitfalls of mapping high-throughput sequencing data to repetitive sequences: Piwi's genomic targets still not identifiedGeorgi K Marinov, Jie Wang, Dominik Handler, et al.Plos Biology|January 15, 2025
Multi-tissue characterization of the constitutive heterochromatin proteome in Drosophila identifies a link between satellite DNA organization and transposon repressionAnkita Chavan, Lena Skrutl, Federico Uliana, et al.Cell|November 20, 2012
Transcriptional silencing of transposons by Piwi and maelstrom and its impact on chromatin state and gene expressionGrzegorz Sienski, Derya Dönertas, Julius BrenneckeGenes & Development|August 6, 2013
Drosophila Gtsf1 is an essential component of the Piwi-mediated transcriptional silencing complexDerya Dönertas, Grzegorz Sienski, Julius BrenneckePageof 9