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PMID: 23137297 已发表 · epublish 英语

The folded and disordered domains of human ribosomal protein SA have both idiosyncratic and shared functions as membrane receptors.

Bioscience reports ·第 33 卷 ·第 1 期 ·2013-08-02

Zidane Nora, Ould-Abeih Mohamed B, Petit-Topin Isabelle, Bedouelle Hugues

摘要

The human RPSA [ribosomal protein SA; also known as LamR1(laminin receptor 1)] belongs to the ribosome but is also a membrane receptor for laminin, growth factors, prion, pathogens and the anticarcinogen EGCG (epigallocatechin-gallate). It contributes to the crossing of the blood-brain barrier by neurotropic viruses and bacteria, and is a biomarker of metastasis. RPSA includes an N-terminal domain, which is folded and homologous to the prokaryotic RPS2, and a C-terminal extension, which is intrinsically disordered and conserved in vertebrates. We used recombinant derivatives of RPSA and its N- and C-domains to quantify its interactions with ligands by in-vitro immunochemical and spectrofluorimetric methods. Both N- and C-domains bound laminin with K(D) (dissociation constants) of 300 nM. Heparin bound only to the N-domain and competed for binding to laminin with the negatively charged C-domain, which therefore mimicked heparin. EGCG bound only to the N-domain with a K(D) of 100 nM. Domain 3 of the envelope protein from yellow fever virus and serotypes-1 and -2 of dengue virus bound preferentially to the C-domain whereas that from West Nile virus bound only to the N-domain. Our quantitative in-vitro approach should help clarify the mechanisms of action of RPSA, and ultimately fight against cancer and infectious agents.

文献信息
期刊
Bioscience reports
期刊简称
Biosci Rep
发表日期
2013-08-02
收录日期
2013-01-30
更新日期
2015-02-22
语言
英语
国家/地区
England
NLM ID
8102797
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