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Functional Differentiation of Antiporter-Like Polypeptides in Complex I; a Site-Directed Mutagenesis Study of Residues Conserved in MrpA and NuoL but Not in MrpD NuoM and NuoN

机译:复合物I中类似反向转运蛋白的多肽的功能分化;对在MrpA和NuoL中保守但不在MrpDNuoM和NuoN中保守的残基进行定点诱变研究

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摘要

It has long been known that the three largest subunits in the membrane domain (NuoL, NuoM and NuoN) of complex I are homologous to each other, as well as to two subunits (MrpA and MrpD) from a Na+/H+ antiporter, Mrp. MrpA and NuoL are more similar to each other and the same is true for MrpD and NuoN. This suggests a functional differentiation which was proven experimentally in a deletion strain model system, where NuoL could restore the loss of MrpA, but not that of MrpD and vice versa. The simplest explanation for these observations was that the MrpA and MrpD proteins are not antiporters, but rather single subunit ion channels that together form an antiporter. In this work our focus was on a set of amino acid residues in helix VIII, which are only conserved in NuoL and MrpA (but not in any of the other antiporter-like subunits.) and to compare their effect on the function of these two proteins. By combining complementation studies in B. subtilis and 23Na-NMR, response of mutants to high sodium levels were tested. All of the mutants were able to cope with high salt levels; however, all but one mutation (M258I/M225I) showed differences in the efficiency of cell growth and sodium efflux. Our findings showed that, although very similar in sequence, NuoL and MrpA seem to differ on the functional level. Nonetheless the studied mutations gave rise to interesting phenotypes which are of interest in complex I research.
机译:早就知道复合物I的膜结构域中的三个最大亚基(NuoL,NuoM和NuoN)彼此同源,并且与Na + / H + 反转运蛋白,Mrp。 MrpA和NuoL彼此更相似,而MrpD和NuoN也是如此。这表明功能差异已在缺失菌株模型系统中通过实验证明,其中NuoL可以恢复MrpA的丢失,但不能恢复MrpD的丢失,反之亦然。这些观察结果最简单的解释是MrpA和MrpD蛋白不是反转运蛋白,而是一起形成反转运蛋白的单个亚基离子通道。在这项工作中,我们的重点是在螺旋VIII中的一组氨基酸残基,这些残基仅在NuoL和MrpA中是保守的(但在其他任何反转运蛋白样亚基中均不保守),并比较它们对这两个功能的影响。蛋白质。通过对枯草芽孢杆菌和 23 Na-NMR的互补研究相结合,测试了突变体对高钠水平的响应。所有的突变体都能应付高盐水平。然而,除一个突变(M258I / M225I)外,其他所有突变均显示出细胞生长效率和钠流出效率的差异。我们的发现表明,尽管序列非常相似,但NuoL和MrpA在功能水平上似乎有所不同。然而,所研究的突变产生了有趣的表型,这是复杂I研究中感兴趣的。

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