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Position 170 of Rabbit Na+/glucose cotransporter (rSGLT1) lies in the Na+ pathway; modulation of polarity/charge at this site regulates charge transfer and carrier turnover
Authors:Huntley Steven A  Krofchick Daniel  Silverman Mel
Affiliation:Department of Medicine, University of Toronto, Toronto, Ontario, Canada.
Abstract:Positions 163, 166, and 173, within the putative external loop joining transmembrane segments IV and V of rabbit Na(+)/glucose cotransporter, form part of its Na(+) interaction and voltage-sensing domain. Since a Q170C mutation within this region exhibits anomalous behavior, its function was further investigated. We used Xenopus oocytes coinjected with mouse T-antigen to enhance Q170C expression, and the two-microelectrode voltage-clamp technique. For Q170C, alpha-methyl D-glucopyranoside, phloridzin, and Na(+) affinity values are equivalent to those of wild-type; but turnover is reduced approximately 50%. Decreased [Na(+)] reduces Q170C, but not wild-type, charge transfer. Q170C presteady-state currents exhibit three time constants, tau, identical to wild-type. MTSES decreases maximal alpha-methyl D-glucopyranoside-induced currents by approximately 64% and Na(+) leak by approximately 55%; phloridzin and Na(+) affinity are unchanged. MTSES also reduces charge transfer (dithiothreitol-reversible) and Q170C turnover by approximately 60-70%. MTSEA and MTSET protect against MTSES, but neither affect Q170C function. MTSES has no obvious effect on the tau-values. Q170A behaves the same as Q170C. The mutation Q170E affects voltage sensitivity and reduces turnover, but also appears to influence Na(+) interaction. We conclude that 1), glutamine 170 lies in the Na(+) pathway in rabbit Na(+)/glucose cotransporter and 2), altered polarity and charge at position 170 affect a cotransporter conformational state and transition, which is rate-limiting, but probably not associated with empty carrier reorientation.
Keywords:αMG, α-methyl D-glucopyranoside   DTT, dithiothreitol   hSGLT1, human SGLT1   Imax, maximal substrate-induced current   k, turnover number   KD, phloridzin affinity constant   KM, substrate affinity constant   KNa, Na+ affinity constant   MTS, methanethiosulfonate   MTSEA, (2-aminoethyl)methanethiosulfonate hydrobromide   MTSES, Na+(2-sulfonatoethyl)methanethiosulfonate   MTSET, [2-(trimethylammonium)ethyl]methanethiosulfonate bromide   n, Hill coefficient   pz, phloridzin   Qdep, charge due to depolarizing pulses   Qhyp, charge due to hyperpolarizing pulses   Qmax, the maximum charge transferred as calculated with the two-state Boltzmann relation   Qtotal, the maximum charge transferred   rSGLT1, rabbit SGLT1   SGLT1, high affinity Na+/glucose cotransporter   wt SGLT1, wild-type SGLT1   τ, decay constant   τs, slow decay constant   τm, medium decay constant   τf, fast decay constant   TM, transmembrane segment   V0.5, potential at which charge transfer is half complete   Vh, holding potential   Vt, test potential   z, steady-state valence   zapp, apparent valence of charge movement
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