Adjimani J P, Emery T
J Bacteriol. 1987 Aug;169(8):3664-8. doi: 10.1128/jb.169.8.3664-3668.1987.
The cyclic trihydroxamic acid, N,N',N''-triacetylfusarinine C, produced by Mycelia sterilia EP-76, was shown to be a ferric ionophore for this organism. The logarithm of the association constant k for the ferric triacetylfusarinine C chelate was determined to be 31.8. Other iron-chelating agents, such as rhodotorulic acid, citric acid, and the monomeric subunit of triacetylfusarinine C, N-acetylfusarinine, delivered iron to the cells by an indirect mechanism involving iron exchange into triacetylfusarinine C. In vitro ferric ion exchange was found to be rapid with triacetylfusarinine C. Gallium uptake rates comparable to those of iron were observed with the chelating agents that transport iron into the cell. Ferrichrome, but not ferrichrome A, was also capable of delivering iron and gallium to this organism, but not by an exchange mechanism. Unlike triacetylfusarinine C, the 14C-ligand of ferrichrome was retained by the cell. A midpoint potential of -690 mV with respect to the saturated silver chloride electrode was obtained for the ferric triacetylfusarinine C complex, indicating that an unfavorable reduction potential was not the reason for the use of a hydrolytic mechanism of intracellular iron release from the ferric triacetylfusarinine C chelate.
由不育菌丝体EP - 76产生的环状异羟肟酸N,N',N''-三乙酰镰刀菌素C,被证明是该生物体的铁离子载体。三乙酰镰刀菌素C铁螯合物的缔合常数k的对数被测定为31.8。其他铁螯合剂,如玫红酵母酸、柠檬酸以及三乙酰镰刀菌素C的单体亚基N - 乙酰镰刀菌素,通过涉及铁交换为三乙酰镰刀菌素C的间接机制将铁传递给细胞。发现三乙酰镰刀菌素C在体外的铁离子交换很快。对于那些将铁转运到细胞内的螯合剂,观察到镓的摄取速率与铁相当。铁载体,但不是铁载体A,也能够将铁和镓传递给该生物体,但不是通过交换机制。与三乙酰镰刀菌素C不同,铁载体的14C配体被细胞保留。三乙酰镰刀菌素C铁络合物相对于饱和氯化银电极的中点电位为 - 690 mV,这表明不利的还原电位不是从三乙酰镰刀菌素C铁螯合物中释放细胞内铁采用水解机制的原因。