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Escherichia coli iron enterobactin uptake monitored by Mössbauer spectroscopy.

机译:Mössbauer光谱法监测大肠埃希氏杆菌对铁的摄取。

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摘要

Iron uptake by Escherichia coli under aerobic conditions of iron deficiency is mediated by a highly stable ferric enterobactin [Fe(ent)3-] siderophore complex. Mössbauer spectroscopy has been used to monitor the fate of the iron as 57Fe(ent) was taken up by the cells. Osmotic shock experiments were used to distinguish between the iron present in the periplasmic space and that in the cytoplasm of the cell. Iron delivery by a synthetic analog of enterobactin, 1,3,5-N,N',N''- tris-(2,3-dihydroxybenzoyl)triaminomethylbenzene (MECAM), was also studied. Although Fe-MECAM was transported at the same rate as was Fe(ent) across the outer membrane and was apparently accumulated in the periplasmic space, the subsequent behaviors of Fe(ent) and Fe-MECAM were very different. After more than 30 min, a major fraction of the iron originally absorbed as ferric enterobactin appeared as Fe(II), apparently in the cytoplasm of the cell. However, little iron was delivered to the cytoplasm by the MECAM complex. The differences in specificity of these two stages of iron uptake by E. coli are discussed.
机译:大肠杆菌在缺铁的有氧条件下对铁的吸收是由高度稳定的肠铁蛋白[Fe(ent)3-]铁载体复合物介导的。由于细胞吸收了57Fe(ent),因此已使用穆斯堡尔光谱法监测铁的命运。渗透休克实验用于区分存在于周质空间和细胞质中的铁。还研究了通过肠抑素的合成类似物1,3,5-N,N',N''-三-(2,3-二羟基苯甲酰基)三氨基甲基苯(MECAM)递送铁的方法。尽管Fe-MECAM的转运速度与Fe(ent)穿过外膜的速度相同,并且明显地积累在周质空间中,但随后的Fe(ent)和Fe-MECAM的行为却大不相同。 30多分钟后,最初作为肠肠铁蛋白吸收的铁的大部分以Fe(II)的形式出现在细胞的细胞质中。但是,几乎没有铁通过MECAM复合物传递到细胞质。讨论了这两个阶段大肠杆菌吸收铁的特异性的差异。

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