Department of Food Science, Purdue University, West Lafayette, IN, 47907, United States; Whistler Center for Carbohydrate Research, West Lafayette, IN, 47907, United States.
Carbohydr Polym. 2020 Dec 15;250:116859. doi: 10.1016/j.carbpol.2020.116859. Epub 2020 Aug 6.
Fluorescence emissions of molecular rotors (MRs) are affected by local restrictions to molecular motion, and therefore it was considered that MRs can be used as structural probes of biopolymers. In this study, 9-(2-carboxy-2-cyanovinyl)-julolidine (CCVJ), a hydrophilic MR, was used to differentiate branched α-D-glucans, including amylopectin, phytoglycogen, and their β-limit dextrins. CCVJ emissions of glucan dispersions were correlated with dispersion viscosities and glucan branch structures. In diluted glucan dispersions, CCVJ emission showed essentially linear correlation with glucan content. In concentrated glucan dispersions, CCVJ emission correlated with viscosity in a double-logarithmic linear pattern, with phytoglycogen showing much greater sensitivities than amylopectin. In the plots of CCVJ emission vs. molar amount of branch, phytoglycogen materials showed greater slopes than their amylopectin counterparts, suggesting evident effects of branch structure on the restrictions to CCVJ molecules. Overall, CCVJ has demonstrated its fluorescent sensitivity with glucans, showing strong potentials as a structural probe of biopolymers.
分子转子(MRs)的荧光发射受分子运动的局部限制的影响,因此认为 MRs 可以用作生物聚合物的结构探针。在这项研究中,使用了亲水性的分子转子 9-(2-羧基-2-氰基乙烯基)-乔利定(CCVJ)来区分支化的α-D-葡聚糖,包括支链淀粉、植物糖元和它们的β-极限糊精。葡聚糖分散体的 CCVJ 发射与分散体粘度和葡聚糖支链结构相关。在稀释的葡聚糖分散体中,CCVJ 发射与葡聚糖含量呈基本线性相关。在浓度较高的葡聚糖分散体中,CCVJ 发射与粘度呈双对数线性关系,植物糖元的灵敏度比支链淀粉高得多。在 CCVJ 发射与支化摩尔量的关系图中,植物糖元材料的斜率大于其支链淀粉对应物,这表明支链结构对 CCVJ 分子的限制有明显的影响。总的来说,CCVJ 已经证明了它对葡聚糖的荧光敏感性,作为生物聚合物的结构探针具有很大的潜力。