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肝素调节整合素介导的细胞黏附:与α和β整合素亚基相互作用的特异性

Heparin modulates integrin-mediated cellular adhesion: specificity of interactions with alpha and beta integrin subunits.

作者信息

Da Silva Monica S, Horton Jason A, Wijelath Jacqui M, Blystone Lisa W, Fish Wallace R, Wijelath Errol, Strand Kurt, Blystone Scott D, Sobel Michael

机构信息

Department of Surgery, SUNY Upstate Medical University and Veteran Affairs Medical Center, Syracuse, NY, USA.

出版信息

Cell Commun Adhes. 2003 Mar-Apr;10(2):59-67.

Abstract

Heparin is known to influence the growth, proliferation, and migration of vascular cells, but the precise mechanisms are unknown. We previously demonstrated that unfractionated heparin (UH) binds to the platelet integrin alpha(IIb)beta(3), and enhances ligand binding. To help define the specificity and site(s) of heparin-integrin interactions, we employed the erythroleukemic K562 cell line, transfected to express specific integrins (alpha(v)beta(3), alpha(v)beta(5), and alpha(IIb)beta(3)). By comparing K562 cells expressing a common alpha subunit (Kalpha(v)beta(3), Kalpha(v)beta(5)) with cells expressing a common beta subunit (Kalpha(v)beta(3), Kalpha(IIb)beta(3)), we observed that heparin differentially modulated integrin-mediated adhesion to vitronectin. UH at 0.5-7.5 microg/ml consistently enhanced the adhesion of beta(3) expressing cells (Kalpha(v)beta(3),Kalpha(IIb)beta(3)). In contrast, UH at 0.5-7.5 microg/ml inhibited Kalpha(v)beta(5) adhesion. Experiments using integrin-blocking antibodies, appropriate control ligands, and nontransfected native K562 cells revealed that heparin's actions were mediated by the specific integrins under study. Preincubation of heparin with Kalpha(v)beta(3) cells enhanced adhesion, while preincubation of heparin with the adhesive substrate (vitronectin) had minimal effect. There was a structural specificity to heparin's effect, in that a low molecular weight heparin and chondroitin sulfate showed significantly less enhancement of adhesion. These findings suggest that heparin's modulation of integrin-ligand interactions occurs through its action on the integrin. The inhibitory or stimulatory effects of heparin depend on the beta subunit type, and the potency is dictated by structural characteristics of the glycosaminoglycan.

摘要

已知肝素会影响血管细胞的生长、增殖和迁移,但其确切机制尚不清楚。我们之前证明,未分级肝素(UH)可与血小板整合素α(IIb)β(3)结合,并增强配体结合。为了帮助确定肝素与整合素相互作用的特异性和位点,我们采用了转染以表达特定整合素(α(v)β(3)、α(v)β(5)和α(IIb)β(3))的红白血病K562细胞系。通过将表达共同α亚基的K562细胞(Kα(v)β(3)、Kα(v)β(5))与表达共同β亚基的细胞(Kα(v)β(3)、Kα(IIb)β(3))进行比较,我们观察到肝素对整合素介导的与玻连蛋白的黏附具有不同的调节作用。0.5 - 7.5微克/毫升的UH持续增强表达β(3)的细胞(Kα(v)β(3)、Kα(IIb)β(3))的黏附。相比之下,0.5 - 7.5微克/毫升的UH抑制Kα(v)β(5)的黏附。使用整合素阻断抗体、合适的对照配体以及未转染的天然K562细胞进行的实验表明,肝素的作用是由所研究的特定整合素介导的。肝素与Kα(v)β(3)细胞预孵育可增强黏附,而肝素与黏附底物(玻连蛋白)预孵育的影响最小。肝素的作用具有结构特异性,因为低分子量肝素和硫酸软骨素对黏附增强作用明显较小。这些发现表明,肝素对整合素 - 配体相互作用的调节是通过其对整合素的作用实现的。肝素的抑制或刺激作用取决于β亚基类型,其效力由糖胺聚糖的结构特征决定。

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