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首页> 外文期刊>Biochemistry >The mitochondrial oxoglutarate carrier: structural and dynamic properties of transmembrane segment IV studied by site-directed spin labeling.
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The mitochondrial oxoglutarate carrier: structural and dynamic properties of transmembrane segment IV studied by site-directed spin labeling.

机译:线粒体氧化载体载体:通过定向旋转标记研究的跨膜段IV的结构和动态性质。

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The structural and dynamic features of the fourth transmembrane segment of the mitochondrial oxoglutarate carrier were investigated using site-directed spin labeling and electron paramagnetic resonance (EPR). Using a functional carrier protein with native cysteines replaced with serines, the 18 consecutive residues from S184 to S201 which are believed to form the transmembrane segment IV were substituted individually with cysteine and labeled with a thiol-selective nitroxide reagent. Most of the labeled mutants exhibited significant oxoglutarate transport in reconstituted liposomes, where they were examined by EPR as a function of the incident microwave power in the presence and absence of two paramagnetic perturbants, i.e., the hydrophobic molecular oxygen or the hydrophilic chromium oxalate complex. The periodicity of the sequence-specific variation in the spin-label mobility and the O(2) accessibility parameters unambiguously identifies the fourth transmembrane segment of the mitochondrial oxoglutarate carrier as an alpha-helix. The accessibility to chromium oxalate is out of phase with oxygen accessibility, indicating that the helix is amphipatic, with the hydrophilic face containing the residues found to be important for transport activity by site-directed mutagenesis and chemical modification. The helix is strongly packed, as indicated by the values of normalized mobility, which also suggest that the conformational changes occurring during transport probably involve the N-terminal region of the helix.
机译:使用位点定向的旋转标记和电子顺磁共振(EPR)研究了线粒体氧化氟盐载体的第四跨膜段的结构和动态特征。使用具有用丝氨酸的天然半胱氨酸的官能载体蛋白质,来自S184至S201的18个连续的残基被认为形成跨膜段IV的用半胱氨酸单独取代并用硫醇选择性硝基氧化物试剂标记。大多数标记的突变体在重构的脂质体中表现出显着的氧化杂种物转运,其中EPR在存在和不存在两个顺磁性扰动中的发生和不存在的情况下,通过EPR来检查它们的函数,即疏水性分子氧或其亲水性铬酸铬复合物。旋转标签迁移率和O(2)可访问性参数的序列特异性变化的周期明确地将线粒体氧化氟化氟化物载体的第四跨膜段作为α-螺旋识别。草酸铬的可用性与氧可用性超出相位,表明螺旋是两性的,含有残留物的亲水性面对通过定点诱变和化学改性对运输活性很重要。螺旋强烈包装,如标准化移动性的值所示,这也表明运输期间发生的构象变化可能涉及螺旋的N末端区域。

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