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表面核仁素参与乳铁蛋白在靶细胞中的结合和内吞作用。

Surface nucleolin participates in both the binding and endocytosis of lactoferrin in target cells.

作者信息

Legrand Dominique, Vigié Keveen, Said Elias A, Elass Elisabeth, Masson Maryse, Slomianny Marie-Christine, Carpentier Mathieu, Briand Jean-Paul, Mazurier Joël, Hovanessian Ara G

机构信息

Institut Fédératif de Recherche n degrees 118, Université des Sciences et Technologies de Lille, Villeneuve d'Ascq, France.

出版信息

Eur J Biochem. 2004 Jan;271(2):303-17. doi: 10.1046/j.1432-1033.2003.03929.x.

Abstract

Lactoferrin (Lf), a multifunctional molecule present in mammalian secretions and blood, plays important roles in host defense and cancer. Indeed, Lf has been reported to inhibit the proliferation of cancerous mammary gland epithelial cells and manifest a potent antiviral activity against human immunodeficiency virus and human cytomegalovirus. The Lf-binding sites on the cell surface appear to be proteoglycans and other as yet undefined protein(s). Here, we isolated a Lf-binding 105 kDa molecular mass protein from cell extracts and identified it as human nucleolin. Medium-affinity interactions ( approximately 240 nm) between Lf and purified nucleolin were further illustrated by surface plasmon resonance assays. The interaction of Lf with the cell surface-expressed nucleolin was then demonstrated through competitive binding studies between Lf and the anti-human immunodeficiency virus pseudopeptide, HB-19, which binds specifically surface-expressed nucleolin independently of proteoglycans. Interestingly, binding competition studies between HB-19 and various Lf derivatives in proteoglycan-deficient hamster cells suggested that the nucleolin-binding site is located in both the N- and C-terminal lobes of Lf, whereas the basic N-terminal region is dispensable. On intact cells, Lf co-localizes with surface nucleolin and together they become internalized through vesicles of the recycling/degradation pathway by an active process. Morever, a small proportion of Lf appears to translocate in the nucleus of cells. Finally, the observations that endocytosis of Lf is inhibited by the HB-19 pseudopeptide, and the lack of Lf endocytosis in proteoglycan-deficient cells despite Lf binding, point out that both nucleolin and proteoglycans are implicated in the mechanism of Lf endocytosis.

摘要

乳铁蛋白(Lf)是一种存在于哺乳动物分泌物和血液中的多功能分子,在宿主防御和癌症中发挥着重要作用。事实上,据报道Lf可抑制癌性乳腺上皮细胞的增殖,并对人类免疫缺陷病毒和人类巨细胞病毒表现出强大的抗病毒活性。细胞表面的Lf结合位点似乎是蛋白聚糖和其他尚未明确的蛋白质。在此,我们从细胞提取物中分离出一种分子量为105 kDa的Lf结合蛋白,并将其鉴定为人核仁素。表面等离子体共振分析进一步阐明了Lf与纯化的核仁素之间的中等亲和力相互作用(约240 nM)。然后通过Lf与抗人类免疫缺陷病毒假肽HB-19之间的竞争性结合研究,证明了Lf与细胞表面表达的核仁素的相互作用,HB-19可独立于蛋白聚糖特异性结合表面表达的核仁素。有趣的是,在蛋白聚糖缺陷的仓鼠细胞中,HB-19与各种Lf衍生物之间的结合竞争研究表明,核仁素结合位点位于Lf的N端和C端叶中,而碱性N端区域是可有可无的。在完整细胞上,Lf与表面核仁素共定位,并且它们一起通过回收/降解途径的囊泡通过一个活跃过程内化。此外,一小部分Lf似乎会转运到细胞核中。最后,HB-19假肽抑制Lf的内吞作用,以及尽管Lf结合但蛋白聚糖缺陷细胞中缺乏Lf内吞作用的观察结果表明,核仁素和蛋白聚糖都参与了Lf内吞作用的机制。

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