CIBICI   14215
CENTRO DE INVESTIGACION EN BIOQUIMICA CLINICA E INMUNOLOGIA
Unidad Ejecutora - UE
artículos
Título:
Mechanism of anion selectivity and stoichiometry of the Na+/I- symporter (NIS)
Autor/es:
PARODER, M; MAESTRAS, M; DOHAN, O; NICOLA, JP; REYNA-NEYRA, A; FOLLENZI, A; DADACHOVA, E; ESKANDARI, S; AMZEL, LM; CARRASCO, N
Revista:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Editorial:
NATL ACAD SCIENCES
Referencias:
Lugar: Washington DC, USA; Año: 2011 vol. 108 p. 17933 - 17938
ISSN:
0027-8424
Resumen:
I- uptake
in the thyroid, the first step in thyroid hormone biosynthesis, is mediated by
the Na+/I- symporter (NIS)
with an electrogenic 2Na+:1I- stoichiometry. We have obtained mechanistic
information on NIS by characterizing the
congenital I- transport defect–causing NIS
mutant G93R. This mutant is targeted to the plasma membrane but is inactive. Substitutions
at position 93 show that the longer the side chain of the neutral residue at
this position, the higher the Km for the anion substrates. Unlike WT NIS, which
mediates symport of Na+ and the environmental pollutant perchlorate
electroneutrally, G93T/N/Q/E/D NIS, strikingly, do it electrogenically with a
2:1 stoichiometry. Furthermore, G93E/Q NIS discriminate between anion
substrates, a discovery with potential clinical relevance. A 3-D homology model
of NIS based on the structure of the bacterial Na+/galactose transporter
identifies G93 as a critical player in the mechanism of the transporter: the
changes from an outwardly to an inwardly open conformation during the transport
cycle use G93 as a pivot.

