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Desorption of Lipases Immobilized on Octyl-Agarose Beads and Coated with Ionic Polymers after Thermal Inactivation. Stronger Adsorption of Polymers/Unfolded Protein Composites

机译:热灭活后固定在辛基-琼脂糖微珠上并涂有离子聚合物的脂肪酶解吸。聚合物/未折叠蛋白复合物的吸附更强

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摘要

Lipases from (isoform B) and (CALB and RML) have been immobilized on octyl-agarose (OC) and further coated with polyethylenimine (PEI) and dextran sulfate (DS). The enzymes just immobilized on OC supports could be easily released from the support using 2% SDS at pH 7, both intact or after thermal inactivation (in fact, after inactivation most enzyme molecules were already desorbed). The coating with PEI and DS greatly reduced the enzyme release during thermal inactivation and improved enzyme stability. However, using OC-CALB/RML-PEI-DS, the full release of the immobilized enzyme to reuse the support required more drastic conditions: a pH value of 3, a buffer concentration over 2 M, and temperatures above 45 °C. However, even these conditions were not able to fully release the thermally inactivated enzyme molecules from the support, being necessary to increase the buffer concentration to 4 M sodium phosphate and decrease the pH to 2.5. The formation of unfolded protein/polymers composites seems to be responsible for this strong interaction between the octyl and some anionic groups of OC supports. The support could be reused five cycles using these conditions with similar loading capacity of the support and stability of the immobilized enzyme.
机译:来自(异构体B)和(CALB和RML)的脂肪酶已固定在辛基琼脂糖(OC)上,并进一步用聚乙烯亚胺(PEI)和硫酸葡聚糖(DS)包被。刚固定在OC载体上的酶可以使用pH为7的2%SDS轻松地从载体上释放,无论是完整的还是在热灭活后(实际上,灭活后大多数酶分子已经解吸)。 PEI和DS涂层大大减少了热灭活过程中的酶释放,提高了酶的稳定性。但是,使用OC-CALB / RML-PEI-DS时,要完全释放固定化酶以重复使用载体,则需要更严格的条件:pH值为3,缓冲液浓度超过2 M,温度超过45°C。然而,即使这些条件也不能从支持物完全释放热灭活的酶分子,这对于将缓冲液浓度增加至4M磷酸钠并将pH降低至2.5是必需的。未折叠的蛋白质/聚合物复合物的形成似乎是造成辛基与OC载体某些阴离子基团之间这种强相互作用的原因。在这些条件下,支持物的负载量和固定化酶的稳定性相似,支持物可以重复使用五个周期。

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