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A molecular mechanism for modulating plasma Zn speciation by fatty acids
Jin Lu1, Alan J Stewart, Darrell Sleep
1Department of Chemistry, University of Warwick, Coventry CV4 7AL, UK.
Abstract:
Albumin transports both fatty acids and zinc in plasma. Competitive binding studied by isothermal titration calorimetry revealed that physiologically relevant levels of fatty acids modulate the Zn-binding capacity of albumin, with far-reaching implications for biological zinc speciation. The molecular mechanism for this effect is likely due to a large conformational change elicited by fatty acid binding to a high-affinity interdomain site that disrupts at least one Zn site. Albumin may be a molecular device to "translate" certain aspects of the organismal energy state into global zinc signals.
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