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首页> 外文期刊>Acta Scientiarum. Technology >Lipase from Aspergillus niger obtained from mangaba residue fermentation: biochemical characterization of free and immobilized enzymes on a sol-gel matrix
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Lipase from Aspergillus niger obtained from mangaba residue fermentation: biochemical characterization of free and immobilized enzymes on a sol-gel matrix

机译:从Mangaba残渣发酵获得的黑曲霉脂肪酶:溶胶-凝胶基质上游离和固定化酶的生化特性

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In this study, mangaba residue (seeds) was used as a substrate for Aspergillus niger lipase production by solid-state fermentation. The partially purified enzyme was efficiently immobilized in a sol-gel matrix by covalent bonding with an immobilization yield of 91.2%. The immobilized biocatalyst and free lipase had an optimum pH of 2.0 and 5.0, respectively. However, greater stability was obtained at pH 4.0 and 7.0, respectively. The biocatalysts showed stability at the optimum temperature of 55°C, where the residual activity was above 87% after 240 min., of incubation. The lower deactivation constant (kd) and higher half-life of the immobilized biocatalyst indicated greater thermal stability than those obtained with the free enzyme. The Michaelis Constant (Km) (77 and 115 mM for free and immobilized lipase, respectively) and maximum reaction rate (Vmax) (1250 and 714 U mg-1 for free and immobilized lipase, respectively) indicated that the immobilization process reduced enzyme-substrate affinity. Regarding the operational stability, the biocatalyst showed relative activity above 50% until seven cycles of reuse in olive oil hydrolysis. This novel biocatalyst obtained from a tropical fruit residue showed biochemical characteristics that support its application in future biocatalysis studies.
机译:在这项研究中,mangaba残留物(种子)被用作通过固态发酵生产黑曲霉脂肪酶的底物。通过共价键合将部分纯化的酶有效地固定在溶胶-凝胶基质中,固定率为91.2%。固定化的生物催化剂和游离脂肪酶的最佳pH分别为2.0和5.0。然而,分别在pH 4.0和7.0下获得了更大的稳定性。生物催化剂在55℃的最佳温度下显示出稳定性,在240分钟后,残留活性在87%以上。固定化生物催化剂的较低的失活常数(kd)和较高的半衰期表明,其热稳定性要高于游离酶。米氏常数(Km)(游离和固定化脂肪酶分别为77和115 mM)和最大反应速率(Vmax)(游离和固定化脂肪酶分别为1250和714 U mg-1)表明,固定化过程降低了酶-底物亲和力。关于操作稳定性,该生物催化剂显示出相对活性高于50%,直到在橄榄油水解中重复使用七个循环为止。从热带水果残留物中获得的这种新型生物催化剂显示出生化特性,可支持其在未来的生物催化研究中的应用。

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