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Structural and Functional Analysis of Transmembrane Segment IV of the Salt Tolerance Protein Sod2

机译:耐盐蛋白Sod2的跨膜片段IV的结构和功能分析

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摘要

Sod2 is the plasma membrane Na+/H+ exchanger of the fission yeast Schizosaccharomyces pombe. It provides salt tolerance by removing excess intracellular sodium (or lithium) in exchange for protons. We examined the role of amino acid residues of transmembrane segment IV (TM IV) (126FPQINFLGSLLIAGCITSTDPVLSALI152) in activity by using alanine scanning mutagenesis and examining salt tolerance in sod2-deficient S. pombe. Two amino acids were critical for function. Mutations T144A and V147A resulted in defective proteins that did not confer salt tolerance when reintroduced into S. pombe. Sod2 protein with other alanine mutations in TM IV had little or no effect. T144D and T144K mutant proteins were inactive; however, a T144S protein was functional and provided lithium, but not sodium, tolerance and transport. Analysis of sensitivity to trypsin indicated that the mutations caused a conformational change in the Sod2 protein. We expressed and purified TM IV (amino acids 125–154). NMR analysis yielded a model with two helical regions (amino acids 128–142 and 147–154) separated by an unwound region (amino acids 143–146). Molecular modeling of the entire Sod2 protein suggested that TM IV has a structure similar to that deduced by NMR analysis and an overall structure similar to that of Escherichia coli NhaA. TM IV of Sod2 has similarities to TM V of the Zygosaccharomyces rouxii Na+/H+ exchanger and TM VI of isoform 1 of mammalian Na+/H+ exchanger. TM IV of Sod2 is critical to transport and may be involved in cation binding or conformational changes of the protein.
机译:Sod2是裂殖酵母粟酒裂殖酵母质膜Na + / H + 交换子。它通过去除多余的细胞内钠(或锂)来交换质子,从而提供了耐盐性。我们通过使用丙氨酸扫描诱变并检测sod2缺陷型的耐盐性来研究跨膜片段IV(TM IV)( 126 FPQINFLGSLLIAGCITSTDPVLSALI 152 )氨基酸残基在活性中的作用。粟酒裂殖酵母两个氨基酸对于功能至关重要。 T144A和V147A突变导致蛋白质缺陷,当重新引入粟酒裂殖酵母时,这些蛋白质不能赋予耐盐性。 TM IV中具有其他丙氨酸突变的Sod2蛋白几乎没有影响。 T144D和T144K突变蛋白无活性;然而,T144S蛋白具有功能性,并提供锂,但不提供钠,耐受性和转运。对胰蛋白酶的敏感性分析表明,该突变引起Sod2蛋白的构象变化。我们表达并纯化了TM IV(氨基酸125-154)。 NMR分析得出一个模型,其中两个螺旋区域(氨基酸128–142和147–154)由未缠绕区域(氨基酸143–146)隔开。整个Sod2蛋白的分子模型表明,TM IV具有类似于通过NMR分析得出的结构,以及类似于大肠杆菌NhaA的总体结构。 Sod2的TM IV与拟南芥(Zygosaccharomyces rouxii)Na + / H + 交换体的TM V和哺乳动物Na + 的亚型1的TM VI相似。 / H + 交换器。 Sod2的TM IV对转运至关重要,并且可能与蛋白质的阳离子结合或构象变化有关。

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