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变形链球菌中的氧毒性:锰、铁与超氧化物歧化酶

Oxygen toxicity in Streptococcus mutans: manganese, iron, and superoxide dismutase.

作者信息

Martin M E, Strachan R C, Aranha H, Evans S L, Salin M L, Welch B, Arceneaux J E, Byers B R

出版信息

J Bacteriol. 1984 Aug;159(2):745-9. doi: 10.1128/jb.159.2.745-749.1984.

Abstract

When cultured anaerobically in a chemically defined medium that was treated with Chelex-100 to lower its trace metal content, Streptococcus mutans OMZ176 had no apparent requirement for manganese or iron. Manganese or iron was necessary for aerobic cultivation in deep static cultures. During continuous aerobic cultivation in a stirred chemostat, iron did not support the growth rate achieved with manganese. Since the dissolved oxygen level in the chemostat cultures was higher than the final level in the static cultures, manganese may be required for growth at elevated oxygen levels. In medium supplemented with manganese, cells grown anaerobically contained a low level of superoxide dismutase (SOD) activity; aerobic cultivation increased SOD activity at least threefold. In iron-supplemented medium, cells grown anaerobically also had low SOD activity; aerobic incubation resulted in little increase in SOD activity. Polyacrylamide gel electrophoresis of the cell extracts revealed a major band and a minor band of SOD activity in the cells grown with manganese; however, cells grown with iron contained a single band of SOD activity with an Rf value similar to that of the major band found in cells grown with manganese. None of the SOD activity bands were abolished by the inclusion of 2 mM hydrogen peroxide in the SOD activity strain. S. mutans may not produce a separate iron-containing SOD but may insert either iron or manganese into an apo-SOD protein. Alternatively, iron may function in another activity (not SOD) that augments the defense against oxygen toxicity at low SOD levels.

摘要

当在经螯合树脂100处理以降低其痕量金属含量的化学限定培养基中进行厌氧培养时,变形链球菌OMZ176对锰或铁没有明显需求。锰或铁对于深层静置培养中的需氧培养是必需的。在搅拌式恒化器中进行连续需氧培养期间,铁无法支持达到与锰相同的生长速率。由于恒化器培养物中的溶解氧水平高于静置培养物中的最终水平,因此在较高氧水平下生长可能需要锰。在补充了锰的培养基中,厌氧生长的细胞含有低水平的超氧化物歧化酶(SOD)活性;需氧培养使SOD活性至少增加了三倍。在补充了铁的培养基中,厌氧生长的细胞也具有低SOD活性;需氧培养导致SOD活性几乎没有增加。细胞提取物的聚丙烯酰胺凝胶电泳显示,在含锰生长的细胞中有一条主要的SOD活性带和一条次要带;然而,含铁生长的细胞含有一条SOD活性带,其Rf值与含锰生长的细胞中发现的主要带相似。在SOD活性测定中加入2 mM过氧化氢后,没有一条SOD活性带被消除。变形链球菌可能不会产生单独的含铁SOD,但可能将铁或锰插入脱辅基SOD蛋白中。或者,铁可能在另一种活性(而非SOD)中起作用,在低SOD水平下增强对氧毒性的防御。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/699f/215708/86bd2c5f7871/jbacter00231-0322-a.jpg

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