Physiological sodium concentrations enhance the iodide affinity of the Na+/I− symporter
نویسندگان
چکیده
The Na(+)/I(-) symporter (NIS) mediates active I(-) transport--the first step in thyroid hormonogenesis--with a 2Na(+):1I(-) stoichiometry. NIS-mediated (131)I(-) treatment of thyroid cancer post-thyroidectomy is the most effective targeted internal radiation cancer treatment available. Here to uncover mechanistic information on NIS, we use statistical thermodynamics to obtain Kds and estimate the relative populations of the different NIS species during Na(+)/anion binding and transport. We show that, although the affinity of NIS for I(-) is low (Kd=224 μM), it increases when Na(+) is bound (Kd=22.4 μM). However, this Kd is still much higher than the submicromolar physiological I(-) concentration. To overcome this, NIS takes advantage of the extracellular Na(+) concentration and the pronounced increase in its own affinity for I(-) and for the second Na(+) elicited by binding of the first. Thus, at physiological Na(+) concentrations, ~79% of NIS molecules are occupied by two Na(+) ions and ready to bind and transport I(-).
منابع مشابه
Monika Paroder and Nancy Carrasco Juan Pablo Nicola , Cécile Basquin , Carla Portulano , Andrea Reyna - Neyra , the intestine The Na + / I - symporter mediates active iodide uptake in
the intestine The Na+/I-symporter mediates active iodide uptake in You might find this additional information useful... is dedicated to innovative approaches to the study of cell and molecular physiology. It is published 12 times AJP-Cell Physiology
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