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对RANTES与糖胺聚糖相互作用的生物物理学见解。

A biophysical insight into the RANTES-glycosaminoglycan interaction.

作者信息

Rek Angelika, Brandner Barbara, Geretti Elena, Kungl Andreas J

机构信息

ProtAffin Biotechnologie AG, Reininghausstrasse 13a, A-8020 Graz, Austria.

出版信息

Biochim Biophys Acta. 2009 Apr;1794(4):577-82. doi: 10.1016/j.bbapap.2009.01.001.

Abstract

Binding of chemokines to glycosaminoglycans (GAGs) represents a crucial step in leukocyte attraction and activation. Since chemokine oligomerisation was shown to be important for GAG binding, the apparent oligomerisation constant of RANTES was determined to be 225 nM using fluorescence anisotropy. In the presence of heparan sulfate, chemokine oligomerisation was found to be promoted by the glycosaminoglycan as expressed in the increase in cooperativity and a shift towards higher melting temperatures in thermal unfolding experiments. In surface plasmon resonance investigations of RANTES-GAG binding kinetics using a heparan sulfate-coated chip, GAG-induced oligomerisation led to a bell-shaped (bi-phasic) Scatchard plot referring to cooperativity in the chemokine-GAG interaction. This was absent in the oligomerisation deficient RANTES mutants N46R and Q48K. We have further investigated the dependence of RANTES-GAG dissociation constants on oligosaccharide chain length by performing isothermal fluorescence titrations with size-defined heparin and heparan sulfate oligosaccharides as chemokine ligands. Heparin dp18 and heparan sulfate dp14 yielded the highest affinities with Kd values of 31.7 nM and 42.9 nM, respectively. Far-UV CD spectroscopy revealed a significant conformational change of RANTES upon heparan sulfate binding which is suggested to be a pre-requisite for oligomerisation and thus for optimal GPCR activation in vivo. This was shown by the impaired chemotactic activity of the RANTES N46R and Q48K mutants.

摘要

趋化因子与糖胺聚糖(GAGs)的结合是白细胞吸引和激活过程中的关键步骤。由于已证明趋化因子寡聚化对GAG结合很重要,因此使用荧光各向异性测定RANTES的表观寡聚化常数为225 nM。在硫酸乙酰肝素存在的情况下,发现糖胺聚糖可促进趋化因子寡聚化,这在热变性实验中表现为协同性增加和熔解温度向更高值偏移。在使用硫酸乙酰肝素包被芯片对RANTES-GAG结合动力学进行表面等离子体共振研究时,GAG诱导的寡聚化导致了一个钟形(双相)的Scatchard图,表明趋化因子与GAG相互作用中存在协同性。在寡聚化缺陷的RANTES突变体N46R和Q48K中则不存在这种情况。我们通过使用大小确定的肝素和硫酸乙酰肝素寡糖作为趋化因子配体进行等温荧光滴定,进一步研究了RANTES-GAG解离常数对寡糖链长度的依赖性。肝素dp18和硫酸乙酰肝素dp14具有最高亲和力,Kd值分别为31.7 nM和42.9 nM。远紫外圆二色光谱显示,硫酸乙酰肝素结合后RANTES发生了显著的构象变化,这被认为是寡聚化以及体内最佳GPCR激活的先决条件。RANTES N46R和Q48K突变体趋化活性受损证明了这一点。

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