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Octasaccharide is the minimal length unit required for efficient binding of cyclophilin B to heparin and cell surface heparan sulphate

机译:八糖是有效结合亲环蛋白B与肝素和细胞表面硫酸乙酰肝素所需的最小长度单位

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摘要

Cyclophilin B (CyPB) is a heparin-binding protein first identified as a receptor for cyclosporin A. In previous studies, we reported that CyPB triggers chemotaxis and integrin-mediated adhesion of T-lymphocytes by way of interaction with two types of binding sites. The first site corresponds to a signalling receptor; the second site has been identified as heparan sulphate (HS) and appears crucial to induce cell adhesion. Characterization of the HS-binding unit is critical to understand the requirement of HS in pro-adhesive activity of CyPB. By using a strategy based on gel mobility shift assays with fluorophore-labelled oligosaccharides, we demonstrated that the minimal heparin unit required for efficient binding of CyPB is an octasaccharide. The mutants CyPBKKK− [where KKK− refers to the substitutions K3A(Lys3→Ala)/K4A/K5A] and CyPBΔYFD (where Tyr14-Phe-Asp16 has been deleted) failed to interact with octasaccharides, confirming that the Y14FD16 and K3KK5 clusters are required for CyPB binding. Molecular modelling revealed that both clusters are spatially arranged so that they may act synergistically to form a binding site for the octasaccharide. We then demonstrated that heparin-derived octasaccharides and higher degree of polymerization oligosaccharides inhibited the interaction between CyPB and fluorophore-labelled HS chains purified from T-lymphocytes, and strongly reduced the HS-dependent pro-adhesive activity of CyPB. However, oligosaccharides or heparin were unable to restore adhesion of heparinase-treated T-lymphocytes, indicating that HS has to be present on the cell membrane to support the pro-adhesive activity of CyPB. Altogether, these results demonstrate that the octasaccharide is likely to be the minimal length unit required for efficient binding of CyPB to cell surface HS and consequent HS-dependent cell responses.
机译:亲环蛋白B(CyPB)是一种肝素结合蛋白,最初被鉴定为环孢菌素A的受体。在以前的研究中,我们报道了CyPB通过与两种类型的结合位点相互作用触发T细胞的趋化性和整联蛋白介导的粘附。第一个位点对应于信号受体。第二个部位已被鉴定为硫酸乙酰肝素(HS),并且对诱导细胞粘附至关重要。 HS结合单元的表征对于理解HS对CyPB的前黏附活性至关重要。通过使用基于荧光团标记的寡糖的凝胶迁移率迁移分析的策略,我们证明了有效结合CyPB所需的最小肝素单位是八糖。突变体CyPBKKK- [其中KKK-指代取代K3A(Lys 3 →Ala)/ K4A / K5A]和CyPBΔYFD(其中Tyr 14 -Phe-Asp 16 已被删除)无法与八糖相互作用,从而确认Y 14 FD 16 和K 3 KK 5 个簇。分子建模表明,两个簇在空间上都排列在一起,因此它们可以协同作用形成八糖的结合位点。然后,我们证明了肝素衍生的八糖和更高聚合度的寡糖抑制了CyPB与从T淋巴细胞纯化的荧光团标记的HS链之间的相互作用,并强烈降低了Cy-依赖HS的促黏附活性。但是,寡糖或肝素不能恢复肝素酶处理的T淋巴细胞的粘附,这表明必须在细胞膜上存在HS才能支持CyPB的促粘附活性。总之,这些结果表明八糖可能是CyPB与细胞表面HS有效结合以及随之而来的HS依赖性细胞反应所需的最小长度单位。

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