首页> 外文期刊>Microbiology >The haem pigment of the oral anaerobes Prevotella nigrescens and Prevotella intermedia is composed of iron(III) protoporphyrin IX in the monomeric form
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The haem pigment of the oral anaerobes Prevotella nigrescens and Prevotella intermedia is composed of iron(III) protoporphyrin IX in the monomeric form

机译:口腔肛门菌和PREVOTELA和PREVOTALLA介质的血红素颜料由单体形式的铁(III)原卟啉IX组成

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The haem pigment of Porphyromonas gingivalis is composed of μ-oxo bishaem, [Fe(III)PPIX]2O, but the nature of that generated by Prevotella species has not been established. M?ssbauer, Raman and UV-visible spectrophotometry were used to characterize the haem pigment of Prevotella intermedia and Prevotella nigrescens. M?ssbauer and Raman spectroscopy revealed the major haem species to be monomeric iron protoporphyrin IX, Fe(III)PPIX.OH (haematin). The terminal growth pH of both species on blood agar was between 5·8 and 6·0, which favours the formation and maintenance of monomeric Fe(III)PPIX.OH. Incubation of Pr. nigrescens and Pr. intermedia with oxyhaemoglobin at pH?6·5 resulted in formation of aquomethaemoglobin which was degraded to generate Fe(III)PPIX.OH which in turn became cell-associated, whilst incubation at pH?7·5 resulted in formation of [Fe(III)PPIX]2O. It is concluded that both Prevotella species degrade oxyhaemoglobin to form [Fe(III)PPIX]2O as an intermediate, which is converted to Fe(III)PPIX.OH through a depression in pH. The low pH encourages cell-surface deposition of insoluble Fe(III)PPIX.OH which would act as a barrier against oxygen and reactive oxygen species, and also protect against H2O2 through its inherent catalase activity.
机译:卟啉单胞苷的葡萄干颜料由μ-oxo Bishaem,[Fe(III)ppix] 2O组成,但尚未建立PREVOTALLA物种产生的性质。 M?Ssbauer,拉曼和UV可见分光光度法用于表征Phigotella介质和PREVOTALLA NIGRESCETS的血液色素。 M?Ssbauer和拉曼光谱揭示了主要血型物种是单体铁原体IX,Fe(III)PPIX.OH(Haematin)。血液琼脂上的两种物种的末端生长pH为5·8和6·0,其利用单体Fe(III)ppix.OH的形成和维持。孵化pr。 nigrescens和pr。含有氧气血红蛋白在pHα6·5中产生的Aquomethaemoglobin的形成,其降解以产生Fe(III)ppix.oh,其又变成细胞相关的,同时在pH→7·5时孵育,导致形成[Fe(III)的形成)ppix] 2o。得出结论,PREVOTALLA物种均降低氧气血红蛋白以形成[Fe(III)ppix] 2O作为中间体,其通过PH的抑郁转化为FE(III)ppix.OH。低pH促进不溶性Fe(III)PPIX.OH的细胞表面沉积,其将作为氧气和反应性氧物质的屏障作用,并且还通过其固有的过氧化氢酶活性保护H 2 O 2。

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