Huschka H, Naegeli H U, Leuenberger-Ryf H, Keller-Schierlein W, Winkelmann G
J Bacteriol. 1985 May;162(2):715-21. doi: 10.1128/jb.162.2.715-721.1985.
Uptake and competition experiments were performed with Neurospora crassa and Penicillium parvum by using 14C-labeled coprogen and 55Fe-labeled ferrichrome-type siderophores. Several siderophores of the ferrichrome family, such as ferrichrome, ferricrocin, ferrichrysin, and tetraglycyl-ferrichrome as well as the semisynthetic ferricrocin derivatives O-(phenyl-carbamoyl)-ferricrocin and O-(sulfanilyl-carbamoyl)-ferricrocin were taken up by N. crassa. The ferrichrome-type siderophores used vary in the structure of the peptide backbone but possess a common lambda-cis configuration about the iron center and three identical ornithyl-delta-N-acetyl groups as surrounding residues. This suggests that these ferrichrome-type siderophores are recognized by a common ferrichrome receptor. We also concluded that the ferrichrome receptor is lambda-cis specific from the inability to take up the synthetic enantiomers, enantio-ferrichrome and enantio-ferricrocin, possessing a delta-cis configuration about the iron center. On the other hand, we found that coprogen, possessing a delta-absolute configuration and two trans-anhydromevalonic acid residues around the metal center, was also taken up by N. crassa and was competitively inhibited by the ferrichrome-type siderophores. We therefore propose the existence of a common siderophore transport system but the presence of different siderophore receptors in N. crassa. In addition, ferrirubin, which is very slowly transported by N. crassa, inhibited both coprogen and ferrichrome-type siderophore transport. Contrary to the findings with N. crassa, transport experiments with P. parvum revealed the presence of a ferrichrome receptor but the absence of a coprogen receptor; coprogen was neither transported nor did it inhibit the ferrichrome transport.
利用14C标记的粪卟啉原和55Fe标记的铁载体型铁载体,对粗糙脉孢菌和微小青霉进行了摄取和竞争实验。铁载体家族的几种铁载体,如铁载体、铁载体素、铁载体黄素和四甘氨酰铁载体,以及半合成铁载体素衍生物O-(苯基-氨基甲酰基)-铁载体素和O-(磺胺酰基-氨基甲酰基)-铁载体素,都能被粗糙脉孢菌摄取。所使用的铁载体型铁载体在肽主链结构上有所不同,但在铁中心周围具有共同的λ-顺式构型,并且有三个相同鸟氨酰-δ-N-乙酰基作为周围残基。这表明这些铁载体型铁载体被一种共同的铁载体受体所识别。我们还从粗糙脉孢菌无法摄取在铁中心周围具有δ-顺式构型的合成对映体对映铁载体和对映铁载体素得出结论,铁载体受体是λ-顺式特异性的。另一方面,我们发现具有δ-绝对构型且在金属中心周围有两个反式脱水甲羟戊酸残基的粪卟啉原也能被粗糙脉孢菌摄取,并受到铁载体型铁载体的竞争性抑制。因此,我们提出粗糙脉孢菌中存在一种共同的铁载体转运系统,但存在不同的铁载体受体。此外,粗糙脉孢菌转运非常缓慢的铁红素,抑制了粪卟啉原和铁载体型铁载体的转运。与粗糙脉孢菌的研究结果相反,对微小青霉进行的转运实验表明存在铁载体受体,但不存在粪卟啉原受体;粪卟啉原既不被转运,也不抑制铁载体的转运。