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Ferritin from the obligate anaerobe Porphyromonas gingivalis: purification, gene cloning and mutant studies

机译:Ferritin来自incorageAnaerobe porphyromonas gingivalis:纯化,基因克隆和突变研究

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Porphyromonas gingivalis is an obligate anaerobe that utilizes haem, transferrin and haemoglobin efficiently as sources of iron for growth, and has the ability to store haem on its cell surface, resulting in black pigmentation of colonies on blood agar plates. However, little is known about intracellular iron storage in this organism. Ferritin is one of the intracellular iron-storage proteins and may also contribute to the protection of organisms against oxidative stresses generated by intracellular free iron. A ferritin-like protein was purified from P. gingivalis and the encoding gene (ftn) was cloned from chromosomal DNA using information on its amino-terminal amino acid sequence. Comparison of the amino acid sequence deduced from the nucleotide sequence of ftn with those of known ferritins and bacterioferritins identified the protein as a ferritin and positioned it between proteins from the Proteobacteria and Thermotogales. The P. gingivalis ferritin was found to contain non-haem iron, thus confirming its identity. Construction and characterization of a P. gingivalis ferritin-deficient mutant revealed that the ferritin was particularly important for the bacterium to survive under iron-depleted conditions (both haemin and transferrin starvation), indicating that intracellular iron is stored in ferritin regardless of the iron source and that the iron stored in ferritin is utilized under iron-restricted conditions. However, the ferritin appeared not to contribute to protection against oxidative stresses caused by peroxides and atmospheric oxygen.
机译:Porphyromonas Gingivalis是一种难以高效的厌氧,其利用HAEM,转铁蛋白和血红蛋白作为铁的生长来源,并且能够在其细胞表面上存储血液,导致血琼脂平板上的菌落黑色色素沉着。然而,对该生物体中的细胞内铁储存很少。铁蛋白是细胞内的铁储存蛋白之一,也可能有助于保护生物体免受细胞内自由铁产生的氧化应力。从P.使用关于其氨基 - 末端氨基酸序列的信息,从P.凝聚物纯化丁蛋白样蛋白质,并从染色体DNA克隆编码基因(FTN)。从FTN的核苷酸序列中推导的氨基酸序列与已知铁素和菌丝蛋白的氨基酸序列鉴定为蛋白质作为铁蛋白,并将其与蛋白质菌和热试剂之间的蛋白质定位。发现P.Gingivalis铁蛋白含有非丙烯铁,从而证实其身份。 P.Gingivalis Ferritin缺陷型突变体的构建和表征显示,铁蛋白对于在铁耗尽条件下存活的细菌尤其重要,表明细胞内铁无论铁源如何储存在铁源中并且储存在铁蛋白中的铁在铁限制条件下使用。然而,铁蛋白出现不促进保护由过氧化物和大气氧引起的氧化应激。

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