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The Biochemical Journal|November 7, 2002
Mad4 is regulated by a transcriptional repressor complex that contains Miz-1 and c-MycLouise Kime, Stephanie C WrightBiochemical and Biophysical Research Communications|December 1, 2009
The sequence of sites recognised by a member of the RNase E/G family can control the maximal rate of cleavage, while a 5'-monophosphorylated end appears to function cooperatively in mediating RNA bindingStefanie Simone Jourdan, Louise Kime, Kenneth John McDowallMethods in Enzymology|January 24, 2009
Identifying and characterizing substrates of the RNase E/G family of enzymesLouise Kime, Stefanie S Jourdan, Kenneth J McDowallNucleic Acids Research|January 3, 2023
The recognition of structured elements by a conserved groove distant from domains associated with catalysis is an essential determinant of RNase EJustin E Clarke, Kiran Sabharwal, Louise Kime, et al.Nucleic Acids Research|September 20, 2014
Direct entry by RNase E is a major pathway for the degradation and processing of RNA in Escherichia coliJustin E Clarke, Louise Kime, David Romero A, et al.The Journal of Antimicrobial Chemotherapy|March 19, 2023
Resistance to antibacterial antifolates in multidrug-resistant Staphylococcus aureus: prevalence estimates and genetic basisLouise Kime, Tina Waring, Merianne Mohamad, et al.Nucleic Acids Research|January 24, 2014
Adjacent single-stranded regions mediate processing of tRNA precursors by RNase E direct entryLouise Kime, Justin E Clarke, David Romero A, et al.Molecular Microbiology|November 6, 2009
Rapid cleavage of RNA by RNase E in the absence of 5' monophosphate stimulationLouise Kime, Stefanie S Jourdan, Jonathan A Stead, et al.Mbio|October 31, 2019
Transient Silencing of Antibiotic Resistance by Mutation Represents a Significant Potential Source of Unanticipated Therapeutic FailureLouise Kime, Christopher P Randall, Frank I Banda, et al.Scientific Reports|January 27, 2015
The first small-molecule inhibitors of members of the ribonuclease E familyLouise Kime, Helen A Vincent, Deena M A Gendoo, et al.Pageof 2