Nadar Shamraja S, Muley Abhijeet B, Ladole Mayur R, Joshi Pranoti U
Department of Chemical Engineering, Institute of Chemical Technology, Matunga (E), Mumbai 400019, India.
Department of Food Technology, University Institute of Chemical Technology, North Maharashtra University, Jalgaon 425001, India.
Int J Biol Macromol. 2016 Mar;84:69-78. doi: 10.1016/j.ijbiomac.2015.11.082. Epub 2015 Dec 8.
Macromolecular cross-linked enzyme aggregates (M-CLEAs) of α-amylase were prepared by precipitation and subsequent cross-linking. The non-toxic, biodegradable, biocompatible, renewable polysaccharide based macromolecular cross-linkers viz. agar, chitosan, dextran, and gum arabic were used as a substitute for traditional glutaraldehyde to augment activity recovery toward macromolecular substrate. Macromolecular cross-linkers were prepared by periodate mediated controlled oxidation of polysaccharides. The effects of precipitating agent, concentration and different cross-linkers on activity recovery of α-amylase CLEAs were investigated. α-Amylase aggregated with ammonium sulphate and cross-linked by dextran showed 91% activity recovery, whereas glutaraldehyde CLEAs (G-CLEAs) exhibited 42% activity recovery. M-CLEAs exhibited higher thermal stability in correlation with α-amylase and G-CLEAs. Moreover, dextran and chitosan M-CLEAs showed same affinity for starch hydrolysis as of free α-amylase. The changes in secondary structures revealed the enhancements in structural and conformational rigidity attributed by cross-linkers. Finally, after five consecutive cycles dextran M-CLEAs retained 1.25 times higher initial activity than G-CLEAs.
通过沉淀和后续交联制备了α-淀粉酶的大分子交联酶聚集体(M-CLEAs)。使用无毒、可生物降解、生物相容且可再生的基于多糖的大分子交联剂,即琼脂、壳聚糖、葡聚糖和阿拉伯胶,替代传统的戊二醛,以提高对大分子底物的活性回收率。大分子交联剂通过高碘酸盐介导的多糖控制氧化制备。研究了沉淀剂、浓度和不同交联剂对α-淀粉酶CLEAs活性回收率的影响。用硫酸铵聚集并用葡聚糖交联的α-淀粉酶显示出91%的活性回收率,而戊二醛CLEAs(G-CLEAs)的活性回收率为42%。M-CLEAs与α-淀粉酶和G-CLEAs相关,表现出更高的热稳定性。此外,葡聚糖和壳聚糖M-CLEAs对淀粉水解的亲和力与游离α-淀粉酶相同。二级结构的变化揭示了交联剂导致的结构和构象刚性的增强。最后,经过五个连续循环后,葡聚糖M-CLEAs保留的初始活性比G-CLEAs高1.25倍。