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Biochemistry|September 22, 2010
The ATP-dependent remodeler RSC transfers histone dimers and octamers through the rapid formation of an unstable encounter intermediateClaire E Rowe, Geeta J NarlikarPlos Computational Biology|April 24, 2018
DIVERSITY in binding, regulation, and evolution revealed from high-throughput ChIPSneha Mitra, Anushua Biswas, Leelavati NarlikarMethods in Enzymology|July 4, 2016
Analysis of Nucleosome Sliding by ATP-Dependent Chromatin Remodeling EnzymesC Y Zhou, G J NarlikarCurrent Opinion in Genetics & Development|March 15, 2008
ATP-dependent chromatin remodeling enzymes: two heads are not better, just differentLisa R Racki, Geeta J NarlikarMolecular Cell|February 17, 2015
A nucleotide-driven switch regulates flanking DNA length sensing by a dimeric chromatin remodelerJohn D Leonard, Geeta J NarlikarJournal of Molecular Biology|June 6, 2022
ATP Hydrolysis Coordinates the Activities of Two Motors in a Dimeric Chromatin Remodeling EnzymeStephanie L Johnson, Geeta J NarlikarCold Spring Harbor Protocols|January 7, 2015
Identification and computational analysis of gene regulatory elementsLeila Taher, Leelavati Narlikar, Ivan OvcharenkoBioinformatics (Oxford, England)|December 27, 2011
CLARE: Cracking the LAnguage of Regulatory ElementsLeila Taher, Leelavati Narlikar, Ivan OvcharenkoJournal of Molecular Biology|May 20, 2009
Chromatin remodelers act globally, sequence positions nucleosomes locallyPeretz D Partensky, Geeta J NarlikarMethods (San Diego, Calif.)|February 21, 2007
FRET-based methods to study ATP-dependent changes in chromatin structureJanet G Yang, Geeta J NarlikarPageof 13