首页> 外文OA文献 >Single Site Mutations in the Hetero-oligomeric Mrp Antiporter from Alkaliphilic Bacillus pseudofirmus OF4 That Affect Na+/H+ Antiport Activity, Sodium Exclusion, Individual Mrp Protein Levels, or Mrp Complex Formation*
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Single Site Mutations in the Hetero-oligomeric Mrp Antiporter from Alkaliphilic Bacillus pseudofirmus OF4 That Affect Na+/H+ Antiport Activity, Sodium Exclusion, Individual Mrp Protein Levels, or Mrp Complex Formation*

机译:嗜碱芽孢杆菌OF4异源寡聚Mrp反转运蛋白中的单点突变,影响Na + / H +反转运活性,钠排斥,单个Mrp蛋白水平或Mrp复合物形成*

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摘要

Mrp systems are widely distributed and structurally complex cation/proton antiporters. Antiport activity requires hetero-oligomeric complexes of all six or seven hydrophobic Mrp proteins (MrpA–MrpG). Here, a panel of site-directed mutants in conserved or proposed motif residues was made in the Mrp Na+(Li+)/H+ antiporter from an alkaliphilic Bacillus. The mutant operons were expressed in antiporter-deficient Escherichia coli KNabc and assessed for antiport properties, support of sodium resistance, membrane levels of each Mrp protein, and presence of monomeric and dimeric Mrp complexes. Antiport did not depend on a VFF motif or a conserved tyrosine pair, but a role for a conserved histidine in a potential quinone binding site of MrpA was supported. The importance of several acidic residues for antiport was confirmed, and the importance of additional residues was demonstrated (e.g. three lysine residues conserved across MrpA, MrpD, and membrane-bound respiratory Complex I subunits (NuoL/M/N)). The results extended indications that MrpE is required for normal membrane levels of other Mrp proteins and for complex formation. Moreover, mutations in several other Mrp proteins lead to greatly reduced membrane levels of MrpE. Thus, changes in either of the two Mrp modules, MrpA–MrpD and MrpE–MrpG, influence the other. Two mutants, MrpB-P37G and MrpC-Q70A, showed a normal phenotype but lacked the MrpA–MrpG monomeric complex while retaining the dimeric hetero-oligomeric complex. Finally, MrpG-P81A and MrpG-P81G mutants exhibited no antiport activity but supported sodium resistance and a low [Na+]in. Such mutants could be used to screen hypothesized but uncharacterized sodium efflux functions of Mrp apart from Na+ (Li+)/H+ antiport.
机译:Mrp系统是分布广泛且结构复杂的阳离子/质子反转运蛋白。反端口活性需要所有六个或七个疏水性Mrp蛋白(MrpA–MrpG)的杂合寡聚复合物。在这里,在保守或提议的基序残基中的一组定点突变体是在来自嗜碱芽孢杆菌的Mrp Na +(Li +)/ H +反转运蛋白中制备的。突变操纵子在反转运蛋白缺陷型大肠杆菌KNabc中表达,并评估其反转运特性,耐钠性支持,每种Mrp蛋白的膜水平以及单体和二聚体Mrp复合物的存在。 Antiport不依赖于VFF基序或保守的酪氨酸对,但支持保守的组氨酸在MrpA潜在的醌结合位点中的作用。证实了几个酸性残基对于反转运的重要性,并证明了其他残基的重要性(例如,MrpA,MrpD和膜结合呼吸道复合物I亚基(NuoL / M / N)保守的三个赖氨酸残基)。结果扩展表明,MrpE是其他Mrp蛋白的正常膜水平和复合物形成所必需的。此外,其他几种Mrp蛋白的突变导致大大降低了MrpE的膜水平。因此,两个Mrp模块(MrpA–MrpD和MrpE–MrpG)中的任何一个的变化都会影响另一个。两个突变体,MrpB-P37G和MrpC-Q70A,表现出正常的表型,但缺乏MrpA-MrpG单体复合物,同时保留了二聚体异寡聚体。最后,MrpG-P81A和MrpG-P81G突变体不显示反端口活性,但支持耐钠性和低[Na +] in。除了Na +(Li +)/ H +反向转运蛋白外,此类突变体还可用于筛选假设的但未表征的Mrp钠外排功能。

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