Limberg G, Körner R, Buchholt H C, Christensen T M, Roepstorff P, Mikkelsen J D
Danisco Biotechnology, Copenhagen K, Denmark.
Carbohydr Res. 2000 Jul 24;327(3):321-32. doi: 10.1016/s0008-6215(00)00068-9.
A method to determine the amount of galacturonic acid in blocksequence (BS) in pectin homogalacturonan (HG) is described. The method is based on a combination of endopolygalacturonase II (endo-PG II) and exopolygalacturonase (exo-PG) digestion followed by quantification of the liberated galacturonic acid monomer. The amount of monomers released is directly related to the amount of non-esterified galacturonic acid units located between two other non-esterified galacturonic acids units on the HG chain. The amount released for exo-PG digestion only corresponds to the BS located at the non-reducing end of the polymer. The difference between total- and exo-BS was calculated to be the amount of endo-BS located either within or on the reducing end of the HG. Three series of model pectins obtained by de-esterification of a high-ester pectin with either plant pectin methyl-esterase (p-PME, P-series), fungal pectin methyl-esterase (f-PME, F-series) and chemical de-esterification using base (B-series) were analysed and compared with a fully de-esterified pectic acid sample obtained from the same raw material. Clear differences for the increase of the amounts of blocksequence could be seen between de-esterification of the P- and F-series samples supporting a blockwise and a homogenous de-esterification mechanism, respectively. f-PME and base treatment showed only minor differences in the increase of galacturonic acid units in BS, despite differences seen in their methyl-esterification pattern. Differences between the amounts of galacturonic acid located in exo- and endo-BS, provided evidence for the need of a certain start side or blocklength for p-PME to de-esterify blockwise.
本文描述了一种测定果胶同型半乳糖醛酸聚糖(HG)中嵌段序列(BS)内半乳糖醛酸含量的方法。该方法基于内切多聚半乳糖醛酸酶II(endo-PG II)和外切多聚半乳糖醛酸酶(exo-PG)消化相结合,随后对释放的半乳糖醛酸单体进行定量。释放的单体数量与HG链上两个其他非酯化半乳糖醛酸单元之间的非酯化半乳糖醛酸单元数量直接相关。仅外切-PG消化释放的量对应于聚合物非还原端的BS。计算总BS和外切BS之间的差异,即为HG还原端内或还原端上的内切BS量。分析了通过用植物果胶甲酯酶(p-PME,P系列)、真菌果胶甲酯酶(f-PME,F系列)对高酯果胶进行脱酯以及使用碱进行化学脱酯(B系列)得到的三组模型果胶,并与从相同原料获得的完全脱酯的果胶酸样品进行比较。可以看出,P系列和F系列样品脱酯之间在嵌段序列量增加方面存在明显差异,分别支持逐步脱酯和均匀脱酯机制。尽管f-PME和碱处理在甲酯化模式上存在差异,但它们在BS中半乳糖醛酸单元增加方面仅显示出微小差异。外切BS和内切BS中半乳糖醛酸含量的差异,为p-PME进行逐步脱酯需要特定起始端或嵌段长度提供了证据。