首页> 美国卫生研究院文献>Plant Physiology >Generation of monoclonal antibodies against plant cell-wall polysaccharides. I. Characterization of a monoclonal antibody to a terminal alpha-(1--2)-linked fucosyl-containing epitope.
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Generation of monoclonal antibodies against plant cell-wall polysaccharides. I. Characterization of a monoclonal antibody to a terminal alpha-(1--2)-linked fucosyl-containing epitope.

机译:抗植物细胞壁多糖的单克隆抗体的产生。 I.针对末端α-(1→2)连接的含岩藻糖基表位的单克隆抗体的表征。

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摘要

Monoclonal antibodies (McAbs) generated against rhamnogalacturonan I (RG-I) purified from suspension-cultured sycamore maple (Acer pseudoplatanus) cells fall into three recognition groups. Four McAbs (group I) recognize an epitope that appears to be immunodominant and is present on RG-I from maize and sycamore maple, pectin and polygalacturonic acid from citrus, gum tragacanth, and membrane glycoproteins from suspension-cultured cells of maize, tobacco, parsley, bean, and sycamore maple. A second set of McAbs (group II) recognizes an epitope present in sycamore maple RG-I but does not bind to any of the other polysaccharides or glycoproteins recognized by group I. Lastly, one McAb, CCRC-M1 (group III), binds to RG-I and more strongly to xyloglucan (XG) from sycamore maple but not to maize RG-I, citrus polygalacturonic acid, or to the plant membrane glycoproteins recognized by group I. The epitope to which CCRC-M1 binds has been examined in detail. Ligand competition assays using a series of oligosaccharides derived from or related to sycamore maple XG demonstrated that a terminal alpha-(1-->2)-linked fucosyl residue constitutes an essential part of the epitope recognized by CCRC-M1. Oligosaccharides containing this structural motif compete with intact sycamore maple XG for binding to the antibody, whereas structurally related oligosaccharides, which do not contain terminal fucosyl residues or in which the terminal fucosyl residue is linked alpha-(1-->3) to the adjacent glycosyl residue, do not compete for the antibody binding site. The ligand binding assays also indicate that CCRC-M1 binds to a conformationally dependent structure of the polysaccharide. Other results of this study establish that some of the carbohydrate epitopes of the plant extracellular matrix are shared among different macromolecules.
机译:从悬浮培养的梧桐枫(Acer pseudoplatanus)细胞纯化的鼠李糖半乳糖醛酸聚糖I(RG-1)产生的单克隆抗体(McAb)分为三个识别组。四个McAb(I组)识别一个表位,该表位似乎是免疫显性的,并存在于玉米和无花果枫的RG-1上,柑橘,果黄can胶的果胶和聚半乳糖醛酸,以及玉米,烟草,悬浮培养细胞的膜糖蛋白上欧芹,豆和无花果枫。第二组McAb(II组)识别梧桐枫RG-1中存在的表位,但不与I组所识别的任何其他多糖或糖蛋白结合。最后,一个McAb CCRC-M1(III组)结合对RG-1的抗药性更强,对美国梧桐枫的木糖葡聚糖(XG)的抗性更强,但对玉米RG-1,柑橘类聚半乳糖醛酸或I组识别的植物膜糖蛋白的抗药性更强。详情。使用一系列衍生自美国梧桐枫XG或与之相关的寡糖进行的配体竞争分析表明,末端α-(1→2)连接的岩藻糖基残基构成了CCRC-M1识别的表​​位的重要组成部分。含有这种结构基序的寡糖与完整的梧桐枫XG竞争与抗体的结合,而结构相关的寡糖不包含末端岩藻糖基残基或末端岩藻糖基残基与附近的α-(1-> 3)连接糖基残基不竞争抗体结合位点。配体结合测定还表明,CCRC-M1与多糖的构象依赖性结构结合。这项研究的其他结果确定了植物细胞外基质的某些碳水化合物表位在不同的大分子之间共享。

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