Bolscher Jan G M, Adão Regina, Nazmi Kamran, van den Keybus Petra A M, van 't Hof Wim, Nieuw Amerongen Arie V, Bastos Margarida, Veerman Enno C I
Department of Oral Biochemistry, Academic Centre for Dentistry Amsterdam (ACTA), University of Amsterdam and VU University Amsterdam, Van der Boechorststraat 7, NL-1081BT, Amsterdam, The Netherlands.
Biochimie. 2009 Jan;91(1):123-32. doi: 10.1016/j.biochi.2008.05.019. Epub 2008 Jun 5.
The innate immunity factor lactoferrin harbours two antimicrobial moieties, lactoferricin and lactoferrampin, situated in close proximity in the N1 domain of the molecule. Most likely they cooperate in many of the beneficial activities of lactoferrin. To investigate whether chimerization of both peptides forms a functional unit we designed a chimerical structure containing lactoferricin amino acids 17-30 and lactoferrampin amino acids 265-284. The bactericidal activity of this LFchimera was found to be drastically stronger than that of the constituent peptides, as was demonstrated by the need for lower dose, shorter incubation time and less ionic strength dependency. Likewise, strongly enhanced interaction with negatively charged model membranes was found for the LFchimera relative to the constituent peptides. Thus, chimerization of the two antimicrobial peptides resembling their structural orientation in the native molecule strikingly improves their biological activity.
先天性免疫因子乳铁蛋白含有两个抗菌部分,即乳铁蛋白肽和乳铁杀菌肽,它们位于分子的N1结构域中,彼此紧邻。它们很可能在乳铁蛋白的许多有益活性中协同发挥作用。为了研究这两种肽的嵌合是否形成一个功能单元,我们设计了一种嵌合结构,其中包含乳铁蛋白肽的第17至30位氨基酸和乳铁杀菌肽的第265至284位氨基酸。结果发现,这种乳铁蛋白嵌合体的杀菌活性比组成肽的杀菌活性要强得多,这体现在所需剂量更低、孵育时间更短以及对离子强度的依赖性更小。同样,相对于组成肽,乳铁蛋白嵌合体与带负电荷的模型膜之间的相互作用也大大增强。因此,这两种抗菌肽的嵌合类似于它们在天然分子中的结构取向,显著提高了它们的生物活性。