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通过调节谷氨酰胺457处的极性和电荷对兔钠/葡萄糖共转运蛋白构象状态的影响

Effects on conformational states of the rabbit sodium/glucose cotransporter through modulation of polarity and charge at glutamine 457.

作者信息

Liu Tiemin, Krofchick Daniel, Silverman Mel

机构信息

Department of Medicine, University of Toronto, Toronto, Ontario, Canada.

出版信息

Biophys J. 2009 Jan;96(2):748-60. doi: 10.1016/j.bpj.2008.09.045.

Abstract

The high affinity sodium/glucose cotransporter (SGLT1) couples transport of Na(+) and glucose. Previous studies established that mutant Q457C human SGLT1 retains full activity, and sugar translocation is abolished in mutant Q457R or in mutant Q457C after reaction with methanethiosulfonate derivatives, but Na(+) and sugar binding remain intact. To explore the mechanism by which modulation of Q457 abolishes transport, Q457C and Q457R of rabbit SGLT1 were studied using chemical modification and the two-electrode voltage-clamp technique. Compared to wild-type SGLT1, Q457C exhibits approximately 20-fold reduction in phloridzin affinity and preferential occupancy of an inward-facing state. Alkylation of Q457C by [(2-trimethylammonium) ethyl] methanethiosulphonate bromide, (MTSET), reverses these changes while blocking transport. Analysis of pre-steady-state currents in the absence of sugar yields three decay constants for each of Q457C, Q457C-MTSET and Q457R. Comparison of Q457C-MTSET and Q457R with Q457C and wild-type, reveals that inhibition of transport is accompanied by a decrease in magnitude and voltage-independence of the slow decay constant at negative potentials. But fast and medium decays remain unchanged. Computer simulation of transient currents suggests that introduction of positive charge at position 457 leads to a predominant outward rather than inward-facing conformational state. Taken together, the results suggest that glutamine 457, in addition to being involved in sugar binding, is a residue that is sensitive to conformational changes of the carrier.

摘要

高亲和力钠/葡萄糖协同转运蛋白(SGLT1)可偶联Na⁺和葡萄糖的转运。先前的研究表明,突变型Q457C人SGLT1保留了全部活性,而在突变型Q457R或与甲硫基磺酸盐衍生物反应后的突变型Q457C中,糖转运被消除,但Na⁺和糖的结合保持完整。为了探究Q457的调节作用消除转运的机制,使用化学修饰和双电极电压钳技术对兔SGLT1的Q457C和Q457R进行了研究。与野生型SGLT1相比,Q457C对根皮苷的亲和力降低了约20倍,且优先占据向内的状态。用[(2-三甲基铵)乙基]甲硫基磺酸盐溴化物(MTSET)对Q457C进行烷基化处理,可逆转这些变化,同时阻断转运。在无糖情况下对稳态前电流的分析得出了Q457C、Q457C-MTSET和Q457R各自的三个衰减常数。将Q457C-MTSET和Q457R与Q457C及野生型进行比较,发现转运的抑制伴随着负电位下慢衰减常数的幅度和电压独立性的降低。但快衰减和中衰减保持不变。瞬态电流的计算机模拟表明,在第457位引入正电荷会导致主要的向外而非向内的构象状态。综上所述,结果表明谷氨酰胺457除了参与糖结合外,还是一个对载体构象变化敏感的残基。

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