Department of Chemistry, Biochemistry, & Physics, Marist College, Poughkeepsie, NY, 12601, USA.
Appl Biochem Biotechnol. 2023 May;195(5):3311-3326. doi: 10.1007/s12010-022-04296-7. Epub 2022 Dec 31.
Xylanase, a hydrolytic enzyme, is susceptible to inactivation by the oxidative conditions generated by the laccase mediator system (LMS). Given the impetus to develop a mixed enzyme system for application in biomass processing industries, xylanase was encapsulated with either Cu- or Ca-alginate and then exposed to the LMS with variations such as mediator type, mediator concentration, and treatment pH. Results demonstrate that alginate-encapsulated xylanase retains substantial activity (> 80%) when exposed to the LMS relative to non-encapsulated xylanase. Cu-alginate generally provided better protection than Ca-alginate for all mediators, and protection was observed even at a low pH, where the LMS is most potent. Despite encapsulation, xylanase was still capable of hydrolyzing its polymeric substrate xylan, given k/K values within an order of magnitude of that for non-encapsulated xylanase. The alginate matrix does not impede the function of the oxidized mediator, since comparable V values were observed for the conversion of veratryl alcohol to veratraldehyde by free and Cu-alginate encapsulated laccase. Overall, these results support development of a mixed enzyme system for biomass delignification and, more broadly, show potential for protecting protein function in an oxidative environment.
木聚糖酶是一种水解酶,容易被漆酶介体系统(LMS)产生的氧化条件失活。鉴于开发用于生物质加工行业的混合酶系统的动力,木聚糖酶被包封在 Cu-或 Ca-藻酸盐中,然后暴露于具有不同介质类型、介质浓度和处理 pH 值的 LMS 中。结果表明,与未包封的木聚糖酶相比,暴露于 LMS 时,藻酸盐包封的木聚糖酶保留了相当大的活性(>80%)。对于所有的介体,Cu-藻酸盐通常比 Ca-藻酸盐提供更好的保护,甚至在低 pH 值下也能观察到保护,因为在低 pH 值下,LMS 的作用最强。尽管进行了包封,但木聚糖酶仍然能够水解其聚合底物木聚糖,因为其 k/K 值与未包封的木聚糖酶相当。藻酸盐基质不会阻碍氧化介体的功能,因为游离和 Cu-藻酸盐包封的漆酶将藜醇转化为藜醛的 V 值是相当的。总的来说,这些结果支持开发用于生物质脱木质素的混合酶系统,更广泛地说,展示了在氧化环境中保护蛋白质功能的潜力。