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首页> 外文期刊>Scientific reports. >A novel role for Crp in controlling magnetosome biosynthesis in Magnetospirillum gryphiswaldense MSR-1
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A novel role for Crp in controlling magnetosome biosynthesis in Magnetospirillum gryphiswaldense MSR-1

机译:CRP在磁截式Gryphiswaldense MSR-1中控制磁体生物合成中的CRP的新作用

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Magnetotactic bacteria (MTB) are specialized microorganisms that synthesize intracellular magnetite particles called magnetosomes. Although many studies have focused on the mechanism of magnetosome synthesis, it remains unclear how these structures are formed. Recent reports have suggested that magnetosome formation is energy dependent. To investigate the relationship between magnetosome formation and energy metabolism, a global regulator, named Crp, which mainly controls energy and carbon metabolism in most microorganisms, was genetically disrupted in Magnetospirillum gryphiswaldense MSR-1. Compared with the wild-type or complemented strains, the growth, ferromagnetism and intracellular iron content of crp-deficient mutant cells were dramatically decreased. Transmission electron microscopy (TEM) showed that magnetosome synthesis was strongly impaired by the disruption of crp. Further gene expression profile analysis showed that the disruption of crp not only influenced genes related to energy and carbon metabolism, but a series of crucial magnetosome island (MAI) genes were also down regulated. These results indicate that Crp is essential for magnetosome formation in MSR-1. This is the first time to demonstrate that Crp plays an important role in controlling magnetosome biomineralization and provides reliable expression profile data that elucidate the mechanism of Crp regulation of magnetosome formation in MSR-1.
机译:磁直流细菌(MTB)是专用微生物,其合成称为磁体的细胞内磁铁矿颗粒。虽然许多研究专注于磁体合成的机制,但它仍然尚不清楚这些结构是如何形成的。最近的报道表明,磁体形成是能量依赖性的。为了探讨磁体组形成和能量代谢之间的关系,全球调节剂,主要用于在大多数微生物中控制能量和碳代谢的名为CRP,在磁摩托列姆Gryphiswaldense MSR-1中被遗传破坏。与野生型或补充菌株相比,CRP缺陷型突变细胞的生长,铁磁性和细胞内铁含量显着降低。透射电子显微镜(TEM)表明,通过CRP破坏强烈损害磁体合成。进一步的基因表达谱分析表明,CRP的破坏不仅影响了与能量和碳代谢有关的基因,而且还调节了一系列关键的磁体岛(MAI)基因。这些结果表明,CRP对于MSR-1中的磁体形成是必不可少的。这是第一次证明CRP在控制磁体体生物矿化方面发挥着重要作用,并提供可靠的表达谱数据,该数据阐明MSR-1中磁体形成的CRP调节机制。

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