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Proceedings of the National Academy of Sciences of the United States of America|July 9, 2025
A chemoreceptor conformational equilibrium controlled by signaling inputsMikaila C Hoffman, Mingshan Li, Gerald L Hazelbauer, et al.Annual Review of Microbiology|September 22, 2012
Bacterial chemotaxis: the early years of molecular studiesGerald L HazelbauerACS Chemical Biology|October 14, 2021
Concerted Differential Changes of Helical Dynamics and Packing upon Ligand Occupancy in a Bacterial ChemoreceptorJesse B Gordon, Mikaila C Hoffman, Julianne M Troiano, et al.Protein Science : a Publication of the Protein Society|May 11, 2004
Accessibility of introduced cysteines in chemoreceptor transmembrane helices reveals boundaries interior to bracketing charged residuesThomas Boldog, Gerald L HazelbauerJournal of Bacteriology|January 12, 2010
The chemoreceptor dimer is the unit of conformational coupling and transmembrane signalingDivya N Amin, Gerald L HazelbauerProtein Science : a Publication of the Protein Society|August 23, 2011
Direct evidence that the carboxyl-terminal sequence of a bacterial chemoreceptor is an unstructured linker and enzyme tetherNicholas L Bartelli, Gerald L HazelbauerMethods in Enzymology|July 5, 2007
Analyzing transmembrane chemoreceptors using in vivo disulfide formation between introduced cysteinesWing-Cheung Lai, Gerald L HazelbauerJournal of Bacteriology|July 21, 2005
Carboxyl-terminal extensions beyond the conserved pentapeptide reduce rates of chemoreceptor adaptational modificationWing-Cheung Lai, Gerald L HazelbauerProtein Science : a Publication of the Protein Society|August 11, 2015
Differential backbone dynamics of companion helices in the extended helical coiled-coil domain of a bacterial chemoreceptorNicholas L Bartelli, Gerald L HazelbauerThe Journal of Biological Chemistry|October 17, 2012
Influence of membrane lipid composition on a transmembrane bacterial chemoreceptorDivya N Amin, Gerald L HazelbauerPageof 11