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Lanthanide-Dependent Regulation of Methylotrophy in Methylobacterium aquaticum Strain 22A

机译:镧系元素对水生甲基杆菌菌株22A中甲基营养的依赖性调节。

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摘要

Methylobacterium species are representative of methylotrophic bacteria. Their genomes usually encode two types of methanol dehydrogenases (MDHs): MxaF and XoxF. The former is a Ca2+-dependent enzyme, and the latter was recently determined to be a lanthanide-dependent enzyme that is necessary for the expression of mxaF . This finding revealed the unexpected and important roles of lanthanides in bacterial methylotrophy. In this study, we performed transcriptome sequencing (RNA-seq) analysis using M. aquaticum strain 22A grown in the presence of different lanthanides. Expression of mxaF and xoxF1 genes showed a clear inverse correlation in response to La3+. We observed downregulation of formaldehyde oxidation pathways, high formaldehyde dehydrogenase activity, and low accumulation of formaldehyde in the reaction with cells grown in the presence of La3+; this might be due to the direct oxidation of methanol to formate by XoxF1. Lanthanides induced the transcription of AT-rich genes, the function of most of which was unknown, and genes possibly related to cellular survival, as well as other MDH homologues. These results revealed not only the metabolic response toward altered primary methanol oxidation, but also the possible targets to be investigated further in order to better understand methylotrophy in the presence of lanthanides. IMPORTANCE Lanthanides have been considered unimportant for biological processes. In methylotrophic bacteria, however, a methanol dehydrogenase (MDH) encoded by xoxF was recently found to be lanthanide dependent, while the classic-type mxaFI is calcium dependent. XoxF-type MDHs are more widespread in diverse bacterial genera, suggesting their importance for methylotrophy. Methylobacterium species, representative methylotrophic and predominating alphaproteobacteria in the phyllosphere, contain both types and regulate their expression depending on the availability of lanthanides. RNA-seq analysis showed that the regulation takes place not only for MDH genes but also the subsequent formaldehyde oxidation pathways and respiratory chain, which might be due to the direct oxidation of methanol to formate by XoxF. In addition, a considerable number of genes of unknown function, including AT-rich genes, were found to be upregulated in the presence of lanthanides. This study provides first insights into the specific reaction of methylotrophic bacteria to the presence of lanthanides, emphasizing the biological relevance of this trace metal.
机译:甲基细菌种类是甲基营养细菌的代表。它们的基因组通常编码两种类型的甲醇脱氢酶(MDH):MxaF和XoxF。前者是Ca 2 + 依赖的酶,而近来已确定后者是镧系依赖的酶,是表达mxaF所必需的。这一发现揭示了镧系元素在细菌甲基营养中的出乎意料的重要作用。在这项研究中,我们使用在不同镧系元素存在下生长的水产莫拉氏菌菌株22A进行了转录组测序(RNA-seq)分析。 mxaF和xoxF1基因的表达与La 3 + 有明显的负相关。我们观察到与La 3 + 存在下生长的细胞发生反应时,甲醛氧化途径的下调,甲醛脱氢酶活性高和甲醛积累低。这可能是由于XoxF1将甲醇直接氧化为甲酸。镧系元素诱导了富含AT的基因的转录,其中大多数的功能尚不清楚,这些基因可能与细胞存活以及其他MDH同源物有关。这些结果不仅揭示了对改变的伯甲醇氧化的代谢反应,而且还揭示了可能的靶标,以便更好地理解镧系元素存在下的甲基营养。重要事项镧系元素被认为对生物过程不重要。然而,在甲基营养细菌中,最近发现由xoxF编码的甲醇脱氢酶(MDH)依赖镧系元素,而经典型mxaFI则依赖钙。 XoxF型MDHs在不同的细菌属中更为普遍,表明它们对甲基营养的重要性。甲基细菌属种,在叶球体中是代表性的甲基营养型和占主导地位的α蛋白细菌,包含两种类型,并根据镧系元素的可用性调节其表达。 RNA-seq分析表明,调节不仅发生在MDH基因上,而且还发生在随后的甲醛氧化途径和呼吸链上,这可能是由于XoxF将甲醇直接氧化成甲酸盐。另外,发现大量功能未知的基因,包括富含AT的基因,在镧系元素的存在下被上调。这项研究提供了对甲基营养细菌对镧系元素存在的特定反应的初步见解,强调了这种微量金属的生物学相关性。

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