Hervé Cécile, Rogowski Artur, Gilbert Harry J, Paul Knox J
Centre for Plant Sciences, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, UK.
Plant J. 2009 May;58(3):413-22. doi: 10.1111/j.1365-313X.2009.03785.x. Epub 2008 Jan 6.
The capacity of four xylan-directed probes (carbohydrate-binding modules CfCBM2b-1-2 and CjCBM15; monoclonal antibodies LM10 and LM11) to recognize xylan polysaccharides in primary and secondary cell walls of tobacco stem sections has been determined. Enzymatic removal of pectic homogalacturonan revealed differential recognition of xylans in restricted regions of cortical primary cell walls. Monoclonal antibody binding to these exposed xylans was more sensitive to xylanase action than carbohydrate-binding module (CBM) binding. In contrast, the recognition of xylans by CBMs in secondary cell walls of the same organ was more sensitive to xylanase action than the recognition of xylans by the monoclonal antibodies. A methodology was developed to quantify indirect immunofluorescence intensities, and to evaluate xylanase impacts. The four xylan probes were also used to detect xylan populations in chromatographic separations of solubilized cell wall materials from tobacco stems. Altogether, these observations reveal the heterogeneity of the xylans in plant cell walls. They indicate that although CBM and antibody probes can exhibit similar specificities against solubilized polymers, they can have differential capacities for xylan recognition in muro, and that the access of molecular probes and enzymes to xylan epitopes/ligands also varies between primary and secondary cell walls that are present in the same organ.
已测定四种木聚糖导向探针(碳水化合物结合模块CfCBM2b - 1 - 2和CjCBM15;单克隆抗体LM10和LM11)识别烟草茎段初生壁和次生壁中木聚糖多糖的能力。酶法去除果胶同型半乳糖醛酸后,发现在皮层初生壁的受限区域对木聚糖有不同的识别。单克隆抗体与这些暴露的木聚糖结合比碳水化合物结合模块(CBM)结合对木聚糖酶作用更敏感。相比之下,同一器官次生壁中CBM对木聚糖的识别比单克隆抗体对木聚糖的识别对木聚糖酶作用更敏感。开发了一种方法来量化间接免疫荧光强度,并评估木聚糖酶的影响。这四种木聚糖探针还用于在烟草茎中溶解细胞壁材料的色谱分离中检测木聚糖群体。总之,这些观察结果揭示了植物细胞壁中木聚糖的异质性。它们表明,尽管CBM和抗体探针针对溶解的聚合物可表现出相似的特异性,但它们在细胞壁内对木聚糖的识别能力可能不同,并且分子探针和酶对木聚糖表位/配体的可及性在同一器官中的初生壁和次生壁之间也有所不同。