首页> 外文OA文献 >Single Gene Deletions of mrpA to mrpG and mrpE Point Mutations Affect Activity of the Mrp Na+/H+ Antiporter of Alkaliphilic Bacillus and Formation of Hetero-Oligomeric Mrp Complexes▿ †
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Single Gene Deletions of mrpA to mrpG and mrpE Point Mutations Affect Activity of the Mrp Na+/H+ Antiporter of Alkaliphilic Bacillus and Formation of Hetero-Oligomeric Mrp Complexes▿ †

机译:mrpA对mrpG和mrpE点突变的单基因缺失影响嗜碱芽孢杆菌Mrp Na + / H +反转运蛋白的活性和异寡聚Mrp复合物的形成

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摘要

Mrp antiporters catalyze secondary Na+(Li+)/H+ antiport and/or K+/H+ antiport that is physiologically important in diverse bacteria. An additional capacity for anion flux has been observed for a few systems. Mrp is unique among antiporters in that it requires all six or seven hydrophobic gene products (MrpA to MrpG) of the mrp operon for full antiporter activity, but MrpE has been reported to be dispensable. Here, the membrane complexes formed by Mrp proteins were examined using a cloned mrp operon from alkaliphilic Bacillus pseudofirmus OF4. The operon was engineered so that the seven Mrp proteins could be detected in single samples. Membrane extracts of an antiporter-deficient Escherichia coli strain expressing this construct were analyzed by blue native-sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Mrp complexes of two sizes were identified containing all seven Mrp proteins. Studies of the single nonpolar mrp gene deletions in the construct showed that a subcomplex of MrpA, MrpB, MrpC, and MrpD was formed in the absence of MrpE, MrpF, or MrpG. By contrast, MrpE, MrpF, and MrpG were not observed in membranes lacking MrpA, MrpB, MrpC, or MrpD. Although MrpA and MrpD have been hypothesized to be the antiporter proteins, the MrpA-to-D complex was inactive. Every Mrp protein was required for an activity level near that of the wild-type Na+/H+ antiporter, but a very low activity level was observed in the absence of MrpE. The introduction of an MrpE(P114G) mutation into the full Mrp complex led to antiport activity with a greatly increased apparent Km value for Na+. The results suggested that interactions among the proteins of heterooligomeric Mrp complexes strongly impact antiporter properties.
机译:Mrp反向转运蛋白可催化继发的Na +(Li +)/ H +反向转运蛋白和/或K + / H +反向转运蛋白,在多种细菌中具有重要的生理意义。在一些系统中,还观察到了额外的阴离子通量。 Mrp在反转运蛋白中是独特的,因为它需要mrp操纵子的所有六个或七个疏水基因产物(MrpA到MrpG)才能发挥完全的反转运蛋白活性,但是据报道,MrpE是可有可无的。在这里,使用从嗜碱芽孢杆菌OF4克隆的mrp操纵子检查了由Mrp蛋白形成的膜复合物。操纵子经过精心设计,因此可以在单个样品中检测到七个Mrp蛋白。通过蓝色天然-十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析表达该构建体的反转运蛋白缺陷型大肠杆菌菌株的膜提取物。鉴定出两种大小的Mrp复合物,其中包含所有七个Mrp蛋白。对构建物中单个非极性mrp基因缺失的研究表明,在不存在MrpE,MrpF或MrpG的情况下,形成了MrpA,MrpB,MrpC和MrpD的亚复合物。相反,在缺少MrpA,MrpB,MrpC或MrpD的膜中未观察到MrpE,MrpF和MrpG。尽管已经假设MrpA和MrpD是反转运蛋白,但是MrpA-to-D复合物是无活性的。接近野生型Na + / H +反向转运蛋白的活性水平需要每种Mrp蛋白,但是在没有MrpE的情况下观察到非常低的活性水平。在完整的Mrp复合物中引入MrpE(P114G)突变导致反转运活性,Na +的表观Km值大大提高。结果表明异寡聚的Mrp复合物的蛋白质之间的相互作用强烈影响反转运蛋白的性质。

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