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Cell Research|March 23, 2011
Readers of histone modificationsMiyong Yun, Jun Wu, Jerry L Workman, et al.International Review of Cytology|April 17, 2003
Cell and molecular biology of myoblast fusionSusan M Abmayr, Lakshmi Balagopalan, Brian J Galletta, et al.Genetics|February 5, 2008
Analysis of the cell adhesion molecule sticks-and-stones reveals multiple redundant functional domains, protein-interaction motifs and phosphorylated tyrosines that direct myoblast fusion in Drosophila melanogasterKiranmai S Kocherlakota, Jian-Min Wu, Jeffrey McDermott, et al.Elife|June 26, 2018
Histone H3 threonine 11 phosphorylation by Sch9 and CK2 regulates chronological lifespan by controlling the nutritional stress responseSeunghee Oh, Tamaki Suganuma, Madelaine M Gogol, et al.Nature Communications|November 29, 2016
Selective suppression of antisense transcription by Set2-mediated H3K36 methylationSwaminathan Venkatesh, Hua Li, Madelaine M Gogol, et al.Eukaryotic Cell|October 13, 2006
SWI/SNF displaces SAGA-acetylated nucleosomesMark Chandy, José L Gutiérrez, Philippe Prochasson, et al.Nucleic Acids Research|August 31, 2023
The Swi-Snf chromatin remodeling complex mediates gene repression through metabolic controlMichael C Church, Andrew Price, Hua Li, et al.Nature|June 13, 2003
Adaptive evolution drives divergence of a hybrid inviability gene between two species of DrosophilaDaven C Presgraves, Lakshmi Balagopalan, Susan M Abmayr, et al.Molecular and Cellular Biology|October 13, 2006
The CDM superfamily protein MBC directs myoblast fusion through a mechanism that requires phosphatidylinositol 3,4,5-triphosphate binding but is independent of direct interaction with DCrkLakshmi Balagopalan, Mei-Hui Chen, Erika R Geisbrecht, et al.Frontiers in Cell and Developmental Biology|August 29, 2022
Elevated levels of the methyltransferase SETD2 causes transcription and alternative splicing changes resulting in oncogenic phenotypesSaikat Bhattacharya, Divya Reddy, Ning Zhang, et al.Pageof 21