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铁载体介导的棕色固氮菌对铁的摄取

Siderophore-mediated uptake of iron in Azotobacter vinelandii.

作者信息

Knosp O, von Tigerstrom M, Page W J

出版信息

J Bacteriol. 1984 Jul;159(1):341-7. doi: 10.1128/jb.159.1.341-347.1984.

Abstract

Azotobacter vinelandii produces two siderophores, N,N'-bis-(2,3-dihydroxybenzoyl)-L-lysine (azotochelin) and a yellow-green fluorescent peptide (azotobactin), under iron-limited growth conditions. 55Fe uptake was not observed until the substantial nonspecific binding of 55Fe to the cell surface was eliminated by the addition of 10 mM sodium citrate to the uptake medium. Citrate alone did not promote rapid 55Fe uptake in A. vinelandii, nor did it induce Fe-repressible outer membrane proteins. Siderophore-mediated 55Fe uptake appeared biphasic, with both the initial rapid and ensuing slower uptake being energy dependent. The purified siderophores demonstrated the same uptake pattern as the Fe-limited culture supernatant fluid, but either individually or in combination accounted for less than the total 55Fe uptake activity found in the latter. The purified siderophores appeared to be sensitive to acid, but the inhibition of 55Fe uptake was in fact caused by salt generated during neutralization. Similar 60% inhibition of 55Fe uptake activity was caused by the addition of 40 mM Na+, K+, Li+, or Mg2+ salts to the uptake medium. Ammonium was less inhibitory than the latter ions. 55Fe uptake mediated by azotobactin was more sensitive to added NaCl than was that mediated by azotochelin. Neither the chelation of iron nor the stability of the ferrisiderophore was affected by added NaCl.

摘要

在铁限制生长条件下,棕色固氮菌会产生两种铁载体,即N,N'-双-(2,3-二羟基苯甲酰基)-L-赖氨酸(固氮菌素)和一种黄绿色荧光肽(固氮铁素)。在摄取培养基中添加10 mM柠檬酸钠消除了55Fe与细胞表面的大量非特异性结合后,才观察到55Fe的摄取。单独的柠檬酸盐既不能促进棕色固氮菌快速摄取55Fe,也不能诱导铁阻遏外膜蛋白。铁载体介导的55Fe摄取呈现双相性,初始的快速摄取和随后的较慢摄取均依赖于能量。纯化的铁载体表现出与铁限制培养上清液相同的摄取模式,但单独或组合使用时,其摄取的55Fe总量均低于后者。纯化的铁载体似乎对酸敏感,但55Fe摄取的抑制实际上是由中和过程中产生的盐引起的。向摄取培养基中添加40 mM Na+、K+、Li+或Mg2+盐会导致55Fe摄取活性出现类似的60%抑制。铵的抑制作用比后几种离子小。与固氮菌素介导的55Fe摄取相比,固氮铁素介导的55Fe摄取对添加的NaCl更敏感。添加的NaCl既不影响铁的螯合作用,也不影响铁载体铁的稳定性。

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