Specificity of ligand binding to transport sites: Ca2+ binding to the Ca2+ transport ATPase and its dependence on H+ and Mg2+ |
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Authors: | Zafar Sufi Hussain Arif Liu Yueyong Lewis David Inesi G |
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Affiliation: | aT.J. Watson Research Center, IBM, Route 134, P.O. Box 218, Yorktown Heights, NY 10598, USA;bGreenebaum Cancer Center, University of Maryland Medical Center, Baltimore, MD 21201, USA;cCalifornia Pacific Medical Center Research Institute, San Francisco, CA 94107, USA |
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Abstract: | Ligand binding to transport sites constitutes the initial step in the catalytic cycle of transport ATPases. Here, we consider the well characterized Ca2+ ATPase of sarcoplasmic reticulum (SERCA) and describe a series of Ca2+ binding isotherms obtained by equilibrium measurements in the presence of various H+ and Mg2+ concentrations. We subject the isotherms to statistical mechanics analysis, using a model based on a minimal number of mechanistic steps. The analysis allows satisfactory fits and yields information on occupancy of the specific Ca2+ sites under various conditions. It also provides a fundamental method for analysis of binding specificity to transport sites under equilibrium conditions that lead to tightly coupled catalytic activation. |
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Keywords: | Ca2+ ATPase Ca2+ binding H+/Ca2+ exchange Statistical analysis |
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