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铝干扰细菌卟啉生物合成的证据。

Evidence for the interference of aluminum with bacterial porphyrin biosynthesis.

作者信息

Scharf R, Mamet R, Zimmels Y, Kimchie S, Schoenfeld N

机构信息

Department of Environmental Engineering, Faculty of Civil Engineering Technion-Israel Institute of Technology, Haifa.

出版信息

Biometals. 1994 Apr;7(2):135-41. doi: 10.1007/BF00140483.

Abstract

Aluminum (0.74 mM) was found to retard bacterial growth, and enhance porphyrin formation and excretion in Arthrobacter aurescens RS-2. Coproporphyrin III was shown to be the main porphyrin excreted by aluminum-exposed A. aurescens RS-2 cultures and by RS-2 cultures grown under anoxic conditions. Synthesis and excretion of porphyrins in A. aurescens RS-2 increased in a dose-dependent manner when the bacteria were exposed to increasing aluminum concentrations. Incubation of A. aurescens RS-2 with delta-aminolevulinic acid (delta-ALA, 1.2 mM) brought about the intense formation and excretion of porphyrins by the cells, in the presence or absence of aluminum. delta-ALA slightly enhanced the toxicity of aluminum towards RS-2 bacteria. Furthermore, the intracellular concentration of heme was reduced by 63.9 +/- 8.67% in aluminum-exposed RS-2 bacteria when compared with control cultures. The results are discussed in light of the recent finding concerning aluminum toxicity and porphyrin biosynthesis in microorganisms.

摘要

研究发现,铝(0.74毫摩尔)可抑制金黄色节杆菌RS-2的细菌生长,并促进其卟啉的形成与排泄。粪卟啉原III被证明是暴露于铝的金黄色节杆菌RS-2培养物以及在缺氧条件下生长的RS-2培养物排泄的主要卟啉。当细菌暴露于浓度不断增加的铝时,金黄色节杆菌RS-2中卟啉的合成与排泄呈剂量依赖性增加。在有或没有铝存在的情况下,将金黄色节杆菌RS-2与δ-氨基乙酰丙酸(δ-ALA,1.2毫摩尔)一起孵育,会导致细胞强烈地形成和排泄卟啉。δ-ALA略微增强了铝对RS-2细菌的毒性。此外,与对照培养物相比,暴露于铝的RS-2细菌中血红素的细胞内浓度降低了63.9±8.67%。根据最近关于微生物中铝毒性和卟啉生物合成的研究结果对这些结果进行了讨论。

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