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重组可溶性和天然细胞相关CD22对唾液酸寡糖结合的表征。最小结构识别基序的证据以及多位点结合的潜在重要性。

Characterization of sialyloligosaccharide binding by recombinant soluble and native cell-associated CD22. Evidence for a minimal structural recognition motif and the potential importance of multisite binding.

作者信息

Powell L D, Jain R K, Matta K L, Sabesan S, Varki A

机构信息

Department of Medicine, University of California at San Diego, La Jolla 92093, USA.

出版信息

J Biol Chem. 1995 Mar 31;270(13):7523-32. doi: 10.1074/jbc.270.13.7523.

Abstract

CD22, a B cell-specific receptor of the immunoglobulin superfamily, has been demonstrated to bind to oligosaccharides containing alpha 2-6-linked sialic acid (Sia) residues. Previously, we demonstrated that the minimal structure recognized by this lectin is the trisaccharide Sia alpha 2-6Gal beta 1-4GlcNAc, as found on N-linked, O-linked, or glycolipid structures (Powell, L., and Varki, A. (1994) J. Biol. Chem. 269, 10628-10636). Here we utilize a soluble immunoglobulin fusion construct (CD22Rg) to determine directly by equilibrium dialysis the stoichiometry (2:1) and dissociation constant (32 microM) for Neu5Ac alpha 2-6Gal beta 1-4Glc binding. Inhibition assays performed with over 30 different natural and synthetic sialylated and/or sulfated compounds are utilized to define in greater detail specific structural features involved in oligosaccharide-protein binding. Specifically, the critical features required for binding include the exocyclic hydroxylated side chain of the Sia residue and the alpha 2-6 linkage position to the underlying Gal unit. Surprisingly, alterations of the 2-, 3-, and 4-positions of the latter residue have limited effect on the binding. The nature of the residue to which the Gal is attached may affect binding. Bi(alpha 2-6)-sialylated biantennary oligosaccharides are capable of simultaneously interacting with both lectin sites present on the dimeric CD22Rg fusion construct, giving a marked improvement in binding over monosialylated compounds. Furthermore, data are presented indicating that full-length native CD22, expressed on the surface of Chinese hamster ovary cells, is structurally and functionally a multimeric protein, demonstrating a higher apparent affinity for multiply sialylated compounds over monosialylated compounds. These observations provide a mechanism for strong CD22-dependent cell adhesion despite the relatively low Kd for protein-sugar binding.

摘要

CD22是免疫球蛋白超家族的一种B细胞特异性受体,已被证明能与含有α2-6连接唾液酸(Sia)残基的寡糖结合。此前,我们证明这种凝集素识别的最小结构是三糖Siaα2-6Galβ1-4GlcNAc,在N-连接、O-连接或糖脂结构中均可发现(鲍威尔,L.,和瓦尔基,A.(1994年)《生物化学杂志》269,10628 - 10636)。在此,我们利用一种可溶性免疫球蛋白融合构建体(CD22Rg),通过平衡透析直接确定Neu5Acα2-6Galβ1-4Glc结合的化学计量比(2:1)和解离常数(32μM)。用30多种不同的天然和合成唾液酸化和/或硫酸化化合物进行抑制试验,以更详细地确定寡糖 - 蛋白质结合中涉及的特定结构特征。具体而言,结合所需的关键特征包括Sia残基的环外羟基化侧链以及与下层Gal单元的α2-6连接位置。令人惊讶的是,后一残基2、3和4位的改变对结合影响有限。Gal所连接残基的性质可能会影响结合。双(α2-6)-唾液酸化双天线寡糖能够同时与二聚体CD22Rg融合构建体上存在的两个凝集素位点相互作用,与单唾液酸化化合物相比,结合有显著改善。此外,所呈现的数据表明,在中国仓鼠卵巢细胞表面表达的全长天然CD22在结构和功能上是一种多聚体蛋白,对多唾液酸化化合物的表观亲和力高于单唾液酸化化合物。这些观察结果为尽管蛋白质 - 糖结合的Kd相对较低,但CD22依赖性细胞粘附力强提供了一种机制。

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