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The Biochemical Journal|May 15, 1982
THe proton-per-electron stoicheiometry of 'site 1' of oxidative phosphorylation at high protonmotive force is close to 1.5P C de Jonge, H V WesterhoffBio Systems|January 1, 1997
Internal regulation of a modular system: the different faces of internal controlA A van der Gugten, H V WesterhoffEuropean Journal of Biochemistry|January 29, 2000
The relative importance of passive and P-glycoprotein mediated anthracycline efflux from multidrug-resistant cellsP R Wielinga, H V Westerhoff, J LankelmaEuropean Journal of Biochemistry|January 15, 1993
The use of lac-type promoters in control analysisP R Jensen, H V Westerhoff, O MichelsenJournal of Bioenergetics and Biomembranes|December 1, 1995
Experimental determination of control by the H(+)-ATPase in Escherichia coliP R Jensen, O Michelsen, H V WesterhoffBiochimica Et Biophysica Acta|March 15, 1996
Why and when channelling can decrease pool size at constant net flux in a simple dynamic channelP Mendes, D B Kell, H V WesterhoffEuropean Journal of Biochemistry|March 16, 1981
The residual protonmotive force in mitochondria after an oxygen pulseE Heinz, H V Westerhoff, K van DamProceedings of the National Academy of Sciences of the United States of America|June 1, 1988
Coupling of vectorial proton flow to a biochemical reaction by local electric interactionsF Kamp, R D Astumian, H V WesterhoffCell Biophysics|January 1, 1988
Energy coupling and Hill cycles in enzymatic processesF Kamp, G R Welch, H V WesterhoffProceedings of the National Academy of Sciences of the United States of America|September 1, 1993
Control analysis of the dependence of Escherichia coli physiology on the H(+)-ATPaseP R Jensen, O Michelsen, H V WesterhoffPageof 53