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Synthetic xylan-binding modules for mapping of pulp fibres and wood sections

机译:合成木聚糖结合模块用于制浆纸浆纤维和木材切片

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摘要

BackgroundThe complex carbohydrate composition of natural and refined plant material is not known in detail but a matter that is of both basic and applied importance. Qualitative assessment of complex samples like plant and wood tissues requires the availability of a range of specific probes. Monoclonal antibodies and naturally existing carbohydrate binding modules (CBMs) have been used in the past to assess the presence of certain carbohydrates in plant tissues. However, the number of natural CBMs is limited and development of carbohydrate-specific antibodies is not always straightforward. We envisage the use of sets of very similar proteins specific for defined targets, like those developed by molecular evolution of a single CBM scaffold, as a suitable strategy to assess carbohydrate composition. An advantage of using synthetic CBMs lies in the possibility to study fine details of carbohydrate composition within non-uniform substrates like plant cell walls as made possible through minor differences in CBM specificity of the variety of binders that can be developed by genetic engineering.
机译:背景技术天然和精制植物材料的复杂碳水化合物组成尚不清楚,但具有基本和应用重要性。对诸如植物和木材组织之类的复杂样品的定性评估需要一系列特定的探针。过去已使用单克隆抗体和天然存在的碳水化合物结合模块(CBM)来评估植物组织中某些碳水化合物的存在。但是,天然CBM的数量是有限的,碳水化合物特异性抗体的开发并不总是那么简单。我们设想使用特定于特定靶标的非常相似的蛋白质组,例如通过单个CBM支架的分子进化而开发的蛋白质,作为评估碳水化合物成分的合适策略。使用合成煤层气的一个优势在于,有可能研究不均匀底物(如植物细胞壁)中碳水化合物组成的精细细节,这是通过基因工程可以开发的各种粘合剂的煤层气特异性的微小差异而实现的。

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