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On-line liquid chromatography electrospray ionization mass spectrometry for the characterization of k- and l-carrageenans. Application to the hybrid l-/v-carrageenans

机译:在线液相色谱电喷雾电离质谱用于表征k-和l-角叉菜胶。应用于左旋/右旋角叉菜胶

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An on-line liquid chromatography electrospray ionization mass spectrometry (MS) method was developed for the characterization of polymers of kappa- (extracted from Kappaphycus alvarezii), iota-, and hybrid iota-u-carrageenans (both extracted from Eucheuma denticulatum) enzymatically digested with specific carrageenase enzymes. Applying either CID MS/MS or in-source fragmentation mechanisms, the results demonstrated that none of the polymers of kappa- or iota-carrageenans existed with their ideal repeating units. On the polymer of K-carrageenan, the nonideal structures identified consisted of iota-neocarrabiose sulfate units. On the polymer of iota-carrageenan, the nonideal structures identified consisted of the following: (i) K-neocarrabiose sulfate units, (ii) iota-neocarrabiose sulfate units with an additional sulfate group, and (iii) iota-neocarrabiose sulfate units with an additional sulfate and a pyruvate acetal group. For both kappa- and iota-carrageenans, the nonideal structures were randomly distributed on the polymers. The method was then applied for the characterization of a hybrid polymer of iota-u-carrageenans, enzymatically digested with iota-carrageenase. The results did not reveal an ideal oligosaccharide of v-carrageenan, suggesting that the iota-carrageenase enzyme could cleave only reduced "densities" of v-carrageenan repeating units. In addition, information about the sequence of hybrid iota-u-carrageenans from E. denticulatum is deduced.
机译:开发了一种在线液相色谱电喷雾电离质谱(MS)方法,用于酶法表征kappa-(从al-Kappaphycus alvarezii提取),iota-和杂合iota- / nu-卡拉胶(均从Eucheuma denticulatum提取)的聚合物用特定的角叉菜胶酶消化。应用CID MS / MS或源内裂解机制,结果表明,κ-或I-角叉菜胶的聚合物均不存在理想的重复单元。在K-角叉菜胶的聚合物上,鉴定出的非理想结构由碘-新卡拉胶硫酸盐单元组成。在iota-carrageenan的聚合物上,鉴定出的非理想结构由以下组成:(i)K-新卡拉胶硫酸盐单元,(ii)带有额外硫酸盐基团的iota-新卡拉贝糖硫酸盐单元,和(iii)iota-新卡拉胶硫酸盐单元另外的硫酸根和丙酮酸缩醛基。对于κ-和卡拉胶-角叉菜胶,非理想结构随机分布在聚合物上。然后将该方法用于表征通过iota-角叉菜胶酶消化的iota- / nu-角叉菜胶的杂化聚合物。结果没有显示出理想的v-角叉菜胶寡糖,这表明iota-角叉菜胶酶只能切割v-角叉菜胶重复单元的降低的“密度”。此外,推导了有关来自大肠埃希氏菌的混合iota- / nu-卡拉胶的序列的信息。

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