首页> 美国卫生研究院文献>Journal of Bacteriology >Identification of a Conserved Sequence in Flavoproteins Essential for the Correct Conformation and Activity of the NADH Oxidase NoxE of Lactococcus lactis
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Identification of a Conserved Sequence in Flavoproteins Essential for the Correct Conformation and Activity of the NADH Oxidase NoxE of Lactococcus lactis

机译:鉴定乳酸乳球菌NADH氧化酶NoxE正确构象和活性所必需的黄素蛋白保守序列

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摘要

Water-forming NADH oxidases (encoded by noxE, nox2, or nox) are flavoproteins generally implicated in the aerobic survival of microaerophilic bacteria, such as lactic acid bacteria. However, some natural Lactococcus lactis strains produce an inactive NoxE. We examined the role of NoxE in the oxygen tolerance of L. lactis in the rich synthetic medium GM17. Inactivation of noxE suppressed 95% of NADH oxidase activity but only slightly affected aerobic growth, oxidative stress resistance, and NAD regeneration. However, noxE inactivation strongly impaired oxygen consumption and mixed-acid fermentation. We found that the A303T mutation is responsible for the loss of activity of a naturally occurring variant of NoxE. Replacement of A303 with T or G or of G307 with S or A by site-directed mutagenesis led to NoxE aggregation and the total loss of activity. We demonstrated that L299 is involved in NoxE activity, probably contributing to positioning flavin adenine dinucleotide (FAD) in the active site. These residues are part of the strongly conserved sequence LA(T)XXAXXXG included in an alpha helix that is present in other flavoprotein disulfide reductase (FDR) family flavoproteins that display very similar three-dimensional structures.
机译:形成水的NADH氧化酶(由noxE,nox2或nox编码)是黄素蛋白,通常与微需氧细菌(如乳酸菌)的有氧存活有关。但是,某些天然乳酸乳球菌菌株会产生无活性的NoxE。我们在丰富的合成培养基GM17中研究了NoxE在乳酸乳球菌耐氧性中的作用。 noxE的失活抑制了95%的NADH氧化酶活性,但仅轻微影响了好氧生长,抗氧化应激和NAD再生。但是,noxE失活严重损害了氧气消耗和混合酸发酵。我们发现,A303T突变是造成NoxE天然变异体失去活性的原因。通过定点诱变用T或G替代A303或用S或A替代G307导致NoxE聚集并完全丧失活性。我们证明L299参与NoxE活性,可能有助于将黄素腺嘌呤二核苷酸(FAD)定位在活性位点。这些残基是α螺旋中包含的高度保守序列LA(T)XXAXXXG的一部分,该α螺旋存在于表现出非常相似的三维结构的其他黄素二硫化物还原酶(FDR)家族黄素蛋白中。

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