Ascencio F, Ljungh A, Wadstrom T
Department of Medical Microbiology, University of Lund, Sweden.
Appl Environ Microbiol. 1992 Jan;58(1):42-7. doi: 10.1128/aem.58.1.42-47.1992.
Various lactoferrin preparations (iron-saturated and iron-depleted human milk lactoferrins and bovine milk and colostrum lactoferrins) were bound by Aeromonas hydrophila. Binding was (i) reversible (65% of bound lactoferrin was displaced by unlabeled lactoferrin), (ii) specific (lactoferrin but not other iron-containing glycoproteins such as ferritin, transferrin, hemoglobin, and myoglobin inhibited binding), and (iii) significantly reduced by pepsin and neuraminidase treatment of the bacteria. The glycosidic domains of the lactoferrin molecule seem to be involved in binding since precursor monosaccharides of the lactoferrin oligosaccharides (mannose, fucose, and galactose) and glycoproteins which have homologous glycosidic moieties similar to those of the lactoferrin oligosaccharides (asialofetuin or fetuin) strongly inhibited lactoferrin binding. A. hydrophila also binds transferrin, ferritin, cytochrome c, hemin, and Congo red. However, binding of these iron-containing compounds seems to involve bacterial surface components different from those required for lactoferrin binding. Expression of lactoferrin binding by A. hydrophila was influenced by culture conditions. In addition, there was an inverse relationship between lactoferrin binding and siderophore production by the bacterium.
多种乳铁蛋白制剂(铁饱和及缺铁的人乳乳铁蛋白、牛乳和初乳乳铁蛋白)可被嗜水气单胞菌结合。这种结合具有以下特点:(i)可逆性(65%结合的乳铁蛋白可被未标记的乳铁蛋白取代),(ii)特异性(乳铁蛋白能抑制结合,而其他含铁糖蛋白如铁蛋白、转铁蛋白、血红蛋白和肌红蛋白则不能),(iii)对细菌进行胃蛋白酶和神经氨酸酶处理后,结合显著减少。乳铁蛋白分子的糖苷结构域似乎参与了结合,因为乳铁蛋白寡糖的前体单糖(甘露糖、岩藻糖和半乳糖)以及具有与乳铁蛋白寡糖类似同源糖苷部分的糖蛋白(去唾液酸胎球蛋白或胎球蛋白)能强烈抑制乳铁蛋白的结合。嗜水气单胞菌还能结合转铁蛋白、铁蛋白、细胞色素c、血红素和刚果红。然而,这些含铁化合物的结合似乎涉及与乳铁蛋白结合所需不同的细菌表面成分。嗜水气单胞菌对乳铁蛋白的结合表达受培养条件影响。此外,细菌的乳铁蛋白结合与铁载体产生之间存在负相关关系。