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人乳铁蛋白的N端延伸序列Arg2、Arg3、Arg4和Arg5对于与肝素、细菌脂多糖、人溶菌酶和DNA的结合至关重要。

N-terminal stretch Arg2, Arg3, Arg4 and Arg5 of human lactoferrin is essential for binding to heparin, bacterial lipopolysaccharide, human lysozyme and DNA.

作者信息

van Berkel P H, Geerts M E, van Veen H A, Mericskay M, de Boer H A, Nuijens J H

机构信息

Leiden Institute of Chemistry, Medical Biotechnology Department, Gorlaeus Laboratories, Leiden University, The Netherlands.

出版信息

Biochem J. 1997 Nov 15;328 ( Pt 1)(Pt 1):145-51. doi: 10.1042/bj3280145.

Abstract

Human lactoferrin (hLF), a protein involved in host defence against infection and excessive inflammation, interacts with heparin, the lipid A moiety of bacterial lipopolysaccharide, human lysozyme (hLZ) and DNA. To determine which region of the molecule is important in these interactions, solid-phase ligand binding assays were performed with hLF from human milk (natural hLF) and N-terminally deleted hLF variants. Iron-saturated and natural hLF bound equally well to heparin, lipid A, hLZ and DNA. Natural hLF lacking the first two N-terminal amino acids (Gly1-Arg2) showed reactivities of one-half, two-thirds, one-third and one-third towards heparin, lipid A, hLZ and DNA respectively compared with N-terminally intact hLF. A lack of the first three residues (Gly1-Arg2-Arg3) decreased binding to the same ligands to one-eighth, one-quarter, one-twentieth and one-seventeenth respectively. No binding occurred with a mutant lacking the first five residues (Gly1-Arg2-Arg3-Arg4-Arg5). An anti-hLF monoclonal antibody (E11) that reacts to an N-lobe epitope including Arg5 completely blocked hLF-ligand interaction. These results show that the N-terminal stretch of four consecutive arginine residues, Arg2-Arg3-Arg4-Arg5, has a decisive role in the interaction of hLF with heparin, lipid A, hLZ and DNA. The role of limited N-terminal proteolysis of hLF in its anti-infective and anti-inflammatory properties is discussed.

摘要

人乳铁蛋白(hLF)是一种参与宿主抗感染和过度炎症防御的蛋白质,它可与肝素、细菌脂多糖的脂质A部分、人溶菌酶(hLZ)和DNA相互作用。为了确定分子的哪个区域在这些相互作用中起重要作用,我们使用人乳中的hLF(天然hLF)和N端缺失的hLF变体进行了固相配体结合试验。铁饱和的hLF和天然hLF与肝素、脂质A、hLZ和DNA的结合效果相同。与N端完整的hLF相比,缺失前两个N端氨基酸(Gly1-Arg2)的天然hLF对肝素、脂质A、hLZ和DNA的反应性分别为二分之一、三分之二、三分之一和三分之一。缺失前三个残基(Gly1-Arg2-Arg3)会使与相同配体的结合分别降至八分之一、四分之一、二十分之一和十七分之一。缺失前五个残基(Gly1-Arg2-Arg3-Arg4-Arg5)的突变体则不发生结合。一种与包括Arg5在内的N叶表位反应的抗hLF单克隆抗体(E11)完全阻断了hLF与配体的相互作用。这些结果表明,四个连续精氨酸残基的N端序列Arg2-Arg3-Arg4-Arg5在hLF与肝素、脂质A、hLZ和DNA的相互作用中起决定性作用。我们还讨论了hLF有限的N端蛋白水解在其抗感染和抗炎特性中的作用。

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引用本文的文献

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1
Structure and biological actions of lactoferrin.乳铁蛋白的结构与生物学作用。
J Mammary Gland Biol Neoplasia. 1996 Jul;1(3):285-95. doi: 10.1007/BF02018081.
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Lactoferrin is a lipid A-binding protein.乳铁蛋白是一种脂质A结合蛋白。
Infect Immun. 1994 Jun;62(6):2628-32. doi: 10.1128/iai.62.6.2628-2632.1994.

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