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脑膜炎奈瑟菌中的铁:最低需求、铁限制的影响及摄取特征

Iron in Neisseria meningitidis: minimum requirements, effects of limitation, and characteristics of uptake.

作者信息

Archibald F S, DeVoe I W

出版信息

J Bacteriol. 1978 Oct;136(1):35-48. doi: 10.1128/jb.136.1.35-48.1978.

Abstract

A simple defined medium (neisseria defined medium) was devised that does not require iron extraction to produce iron-limited growth of Neisseria meningitidis (SDIC). Comparison of this medium to Mueller-Hinton broth and agar showed nearly identical growth rates and yields. The defined medium was used in batch cultures to determine the disappearance of iron from the medium and its uptake by cells. To avoid a number of problems inherent in batch culture, continuous culture, in which iron and dissolved oxygen were varied independently, was used. Most of the cellular iron was found to be nonheme and associated with the particulate fraction in sonically disrupted cells. Nonheme and catalase-heme iron were reduced by iron starvation far more than cytochromes b and c and N,N,N',N'-tetramethylphenylenediamine-oxidase. The respiration rate and efficiency also decreased under iron limitation, whereas generation times increased. The iron-starved meningococcus took up iron by an energy-independent system operating in the first minute after an iron pulse and a slower energy-dependent system inhibited by respiratory poisons and an uncoupler. The energy-dependent system showed saturation kinetics and was stimulated nearly fourfold by iron privation. In addition, to determine the availability to the meningococcus of the iron in selected compounds, a sensitive assay was devised in which an iron-limited continuous culture was pulsed with the iron-containing compound.

摘要

设计了一种简单的限定培养基(奈瑟菌限定培养基),该培养基无需进行铁提取就能使脑膜炎奈瑟菌(SDIC)在铁限制条件下生长。将这种培养基与穆勒-欣顿肉汤和琼脂进行比较,结果显示生长速率和产量几乎相同。使用该限定培养基进行分批培养,以确定培养基中铁的消失情况及其被细胞摄取的情况。为避免分批培养中固有的一些问题,采用了连续培养,其中铁和溶解氧是独立变化的。发现大多数细胞内的铁是非血红素铁,并且与经超声破碎的细胞中的颗粒部分相关联。铁饥饿时,非血红素铁和过氧化氢酶血红素铁的减少程度远大于细胞色素b和c以及N,N,N',N'-四甲基对苯二胺氧化酶。在铁限制条件下,呼吸速率和效率也会降低,而代时会增加。缺铁的脑膜炎奈瑟菌通过一个在铁脉冲后的第一分钟内起作用的能量非依赖系统以及一个受呼吸毒物和解偶联剂抑制的较慢的能量依赖系统摄取铁。能量依赖系统呈现饱和动力学,并且因缺铁而受到近四倍的刺激。此外,为了确定选定化合物中铁对脑膜炎奈瑟菌的可用性,设计了一种灵敏的测定方法,其中向铁限制的连续培养物中加入含铁化合物进行脉冲处理。

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