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Identification of a distinct antibacterial domain within the N-lobe of ovotransferrin

机译:鉴定卵转铁蛋白N叶内独特的抗菌域

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We have evaluated the bactericidal activity of hen ovotransferrin (OTf), which was found to operate regardless of its iron-deprivation properties, with the objective of isolating the bactericidal domain. The amino-terminal half-molecule (N-lobe, residues 1-332) of OTf, isolated by trypsin-nicking, retained the bactericidal activity independently of iron-deprivation, but not the carboxyl-terminal half-molecule (C-lobe, residue 342-686), suggesting the presence of a bactericidal domain within the N-lobe of the molecule. Specific cleavage at the aspartyl residues of OTf, by diluted-acid procedure, yielded fairly large peptides, whereas proteolysis for 150 min produced the strongest bactericidal peptides mixture. The bactericidal domain was purified from the active hydrolysate by gel filtration and reversed-phase HPLC and showed activity against S. aureus as well as E. coli K-12. Electrophoretic analysis on tricine-SDS-PAGE revealed a bactericidal peptide with an average M_r of 9900 Da under non-reducing conditions. In combination with the specificity of cleavage (Asp-X) and the molecular mass, its N-terminal microsequencing corresponded to a cationic peptide consisting of 92 residues located within the 109-200 sequence of the N-lobe of OTf, containing three intrachain disulfide bridges, featuring a common structural motif occurs in the N-lobes of transferrins for which the sequence is available. Two of the disulfides (C~(160)-C~(174) and C~(171)-C~(182)) form surface exposed cringle bridges lying on the opposite side of the iron-binding site from the interdomain cleft and showing marked sequence homology to insect defensins, which are blockers of the voltage-dependent K~+ channels. The peptide lost antibacterial activity when its disulfide bonds were reduced, indicating the importance of its tertiary structure for the exertion of antibiotic activity.
机译:我们已经评估了卵转铁蛋白(OTf)的杀菌活性,发现它无论其铁的剥夺特性如何都可以发挥作用,目的是分离出杀菌域。通过胰蛋白酶切口分离的OTf的氨基末端半分子(N-叶,残基1-332),保留了除铁剥夺外的杀菌活性,但没有羧基末端半分子(C-叶,残基342-686),表明该分子的N-叶内存在杀菌域。通过稀释酸法对OTf的天冬氨酰残基进行特异性切割,可得到相当大的肽段,而蛋白水解150分钟则产生了最强的杀菌肽段混合物。通过凝胶过滤和反相HPLC从活性水解物中纯化出杀菌域,并显示出对金黄色葡萄球菌和大肠杆菌K-12的活性。 Tricine-SDS-PAGE的电泳分析表明,在非还原条件下,平均M_r为9900 Da的杀菌肽。结合裂解的特异性(Asp-X)和分子量,其N端微序列对应于一个阳离子肽,该肽由OTf N瓣109-200序列内的92个残基组成,包含三个链内二硫键在具有该序列的转铁蛋白的N瓣中,出现具有共同结构基序的桥。二硫化物中的两个(C〜(160)-C〜(174)和C〜(171)-C〜(182))形成了表面暴露的环状桥,该环状桥位于铁结合位点与畴间裂隙和与昆虫防御素具有明显的序列同源性,而昆虫防御素是依赖电压的K〜+通道的阻断剂。当该肽的二硫键还原时,它失去了抗菌活性,这表明其三级结构对于发挥抗生素活性非常重要。

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