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Protein Science : a Publication of the Protein Society|June 1, 1995
Quantitative approaches to utilizing mutational analysis and disulfide crosslinking for modeling a transmembrane domainG F Lee, G L HazelbauerProtein Science : a Publication of the Protein Society|February 1, 1997
Analysis of protein structure in intact cells: crosslinking in vivo between introduced cysteines in the transmembrane domain of a bacterial chemoreceptorA G Hughson, G F Lee, G L HazelbauerProceedings of the National Academy of Sciences of the United States of America|June 6, 1995
Identification of functionally important helical faces in transmembrane segments by scanning mutagenesisG F Lee, D P Dutton, G L HazelbauerProceedings of the National Academy of Sciences of the United States of America|April 11, 1995
Transmembrane signaling characterized in bacterial chemoreceptors by using sulfhydryl cross-linking in vivoG F Lee, M R Lebert, A A Lilly, et al.Journal of Bacteriology|October 1, 1975
Role of the receptor for bacteriophage lambda in the functioning of the maltose chemoreceptor of Escherichia coliG L HazelbauerEuropean Journal of Biochemistry|December 15, 1975
The binding of maltose to 'virgin' maltose-binding protein is biphasicG L HazelbauerThe Journal of Biological Chemistry|November 25, 1994
Deducing the organization of a transmembrane domain by disulfide cross-linking. The bacterial chemoreceptor TrgG F Lee, G G Burrows, M R Lebert, et al.Biochimica Et Biophysica Acta|March 23, 1982
Methyl-accepting chemotaxis proteins are distributed in the membrane independently from basal ends of bacterial flagellaP Engström, G L HazelbauerCell|March 1, 1979
Mutants in transmission of chemotactic signals from two independent receptors of E. coliG L Hazelbauer, S HarayamaPageof 7