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Biotechniques|January 1, 1991
Rapid polymerase chain reaction amplification using intact bacterial cellsA K Joshi, V Baichwal, G F AmesThe Journal of Biological Chemistry|June 14, 1996
Liganded and unliganded receptors interact with equal affinity with the membrane complex of periplasmic permeases, a subfamily of traffic ATPasesG F Ames, C E Liu, A K Joshi, et al.The Journal of Biological Chemistry|July 7, 1995
Structure/function analysis of the periplasmic histidine-binding protein. Mutations decreasing ligand binding alter the properties of the conformational change and of the closed formA Wolf, E W Shaw, B H Oh, et al.Journal of Bioenergetics and Biomembranes|February 1, 1988
Structure and mechanism of bacterial periplasmic transport systemsG F AmesThe Journal of Biological Chemistry|February 11, 1994
The bacterial periplasmic histidine-binding protein. structure/function analysis of the ligand-binding site and comparison with related proteinsB H Oh, C H Kang, H De Bondt, et al.The Journal of Biological Chemistry|October 15, 1992
Purification and characterization of the periplasmic lysine-, arginine-, ornithine-binding protein (LAO) from Salmonella typhimuriumK Nikaido, G F AmesBiochemistry|February 10, 1976
Two-dimensional gel electrophoresis of membrane proteinsG F Ames, K NikaidoProceedings of the National Academy of Sciences of the United States of America|December 1, 1988
DNA gyrase binds to the family of prokaryotic repetitive extragenic palindromic sequencesY Yang, G F AmesThe Journal of Biological Chemistry|September 10, 1999
One intact ATP-binding subunit is sufficient to support ATP hydrolysis and translocation in an ABC transporter, the histidine permeaseK Nikaido, G F AmesJournal of Supramolecular Structure|January 1, 1980
Cloning of the histidine transport genes from Salmonella typhimurium and characterization of an analogous transport system in Escherichia coliF Ardeshir, G F AmesPageof 11