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首页> 外文期刊>The Plant Cell >A Hybrid Approach Enabling Large-Scale Glycomic Analysis of Post-Golgi Vesicles Reveals a Transport Route for Polysaccharides
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A Hybrid Approach Enabling Large-Scale Glycomic Analysis of Post-Golgi Vesicles Reveals a Transport Route for Polysaccharides

机译:一种杂种方法,实现后Golgi囊泡的大规模糖分分析显示多糖的运输路线

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The plant endomembrane system facilitates the transport of polysaccharides, associated enzymes, and glycoproteins through its dynamic pathways. Although enzymes involved in cell wall biosynthesis have been identified, little is known about the endomembrane-based transport of glycan components. This is partially attributed to technical challenges in biochemically determining polysaccharide cargo in specific vesicles. Here, we introduce a hybrid approach addressing this limitation. By combining vesicle isolation with a large-scale carbohydrate antibody arraying technique, we charted an initial large-scale map describing the glycome profile of the SYNTAXIN OF PLANTS61 (SYP61) trans-Golgi network compartment in Arabidopsis (Arabidopsis thaliana). A library of antibodies recognizing specific noncellulosic carbohydrate epitopes allowed us to identify a range of diverse glycans, including pectins, xyloglucans (XyGs), and arabinogalactan proteins in isolated vesicles. Changes in XyG- and pectin-specific epitopes in the cell wall of an Arabidopsis SYP61 mutant corroborate our findings. Our data provide evidence that SYP61 vesicles are involved in the transport and deposition of structural polysaccharides and glycoproteins. Adaptation of our methodology can enable studies characterizing the glycome profiles of various vesicle populations in plant and animal systems and their respective roles in glycan transport defined by subcellular markers, developmental stages, or environmental stimuli.
机译:植物Endomembrane系统通过其动态途径促进多糖,相关酶和糖蛋白的运输。虽然已经鉴定了参与细胞壁生物合成的酶,但关于聚糖组分的基于内膜的转运很少。这部分归因于生物化学测定在特定囊泡中的多糖货物中的技术挑战。在这里,我们介绍了一种解决这个限制的混合方法。通过将囊泡分离与大规模的碳水化合物抗体排列技术相结合,我们绘制了描述了拟南芥(Arabidopsis Thaliana)植物植物61(SYP61)Trans-Golgi网络隔室的Glyce型材的初始大规模图谱。识别特异性非细胞碳水化合物表位的抗体库使我们鉴定了一系列不同的聚糖,包括果胶,木糖葡聚糖(XYGS)和孤立的囊泡中的阿拉伯半乳蛋白酶。拟南芥SYP61突变体的细胞壁中XYG和果胶特异性表位的变化证实了我们的研究结果。我们的数据提供了证据,即SYP61囊泡涉及结构多糖和糖蛋白的运输和沉积。我们的方法的改编可以实现表征植物和动物系统中各种囊泡种群的Glycome型材的研究及其在亚细胞标记物,发育阶段或环境刺激定义的聚糖转运中的各自作用。

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