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The Journal of Biological Chemistry|November 21, 2000
The Mu enhancer is functionally asymmetric both in cis and in trans. Topological selectivity of Mu transposition is enhancer-independentH Jiang, R M HarsheyPlos Biology|April 17, 2025
Membrane-associated σ factors disrupt rRNA operon clustering in Escherichia coliKhang Ho, Rasika M HarsheyJournal of Molecular Biology|May 20, 1991
Two mutations of phage mu transposase that affect strand transfer or interactions with B protein lie in distinct polypeptide domainsP C Leung, R M HarsheyJournal of Molecular Biology|August 17, 2015
Shelter in a SwarmRasika M Harshey, Jonathan D PartridgeMolecular Microbiology|March 23, 2012
Loss of FlhE in the flagellar Type III secretion system allows proton influx into Salmonella and Escherichia coliJaemin Lee, Rasika M HarsheyJournal of Molecular Biology|February 16, 2002
Importance of the conserved CA dinucleotide at Mu terminiI Lee, R M HarsheyProceedings of the National Academy of Sciences of the United States of America|January 18, 1994
Crucial role for DNA supercoiling in Mu transposition: a kinetic studyZ Wang, R M HarsheyMolecular Microbiology|May 19, 2015
Repair of transposable phage Mu DNA insertions begins only when the E. coli replisome collides with the transpososomeSooin Jang, Rasika M HarsheyMolecular Microbiology|August 26, 2009
Rcs signalling-activated transcription of rcsA induces strong anti-sense transcription of upstream fliPQR flagellar genes from a weak intergenic promoter: regulatory roles for the anti-sense transcript in virulence and motilityQingfeng Wang, Rasika M HarsheyBiophysical Journal|September 6, 2011
Collective motion of surfactant-producing bacteria imparts superdiffusivity to their upper surfaceAvraham Be'er, Rasika M HarsheyPageof 13