首页> 外文期刊>Trends in Peptide and Protein Sciences >The Effect of Calcium Alginate Entrapment on the Stability of Novel Lipases from P. Reinekei and P. brenneri
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The Effect of Calcium Alginate Entrapment on the Stability of Novel Lipases from P. Reinekei and P. brenneri

机译:海藻酸钙截留对雷氏对虾和布氏对虾新型脂肪酶稳定性的影响

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The high cost of soluble enzymes can limit their use for commercial and industrial purposes. Immobilization can enhance enzyme reusability, thereby reducing product isolation costs and overcoming this economic barrier. In the current study, two novel, purified lipases from Pseudomonas sp. (Pseudomonas reinekei and Pseudomonas brenneri) were entrapped in a calcium alginate matrix, with the aim of simultaneously enhancing enzyme reusability and stability. Following entrapment, the retained activity of the enzyme-alginate composite was verified by an enzymatic hydrolysis reaction of a p-nitrophenol palmitate substrate. The effect of the enzyme-alginate entrapment against various physiochemical parameters such as pH, temperature, metal ions, and solvents were subsequently examined. The entrapment was found to have minimal beneficial stability gains. However, enhanced enzyme reusability (up to 3 cycles) and stability (up to 18 days at 4°C) of the calcium alginate entrapped lipase, as indicated by residual hydrolysis of p-nitrophenol palmitate, was observed, suggesting potential roles for calcium alginate entrapped lipases in cost efficient enzyme catalysis. HIGHLIGHTS ?Two novel lipases have been entrapped in calcium alginate for the first time. ?A statistically enhanced stability in 1M EDTA was observed following entrapment. ?The novel entrapped lipases display excellent storage stability and reusability.
机译:可溶性酶的高成本可能会限制其用于商业和工业目的。固定化可以增强酶的可重复使用性,从而降低产品分离成本并克服这一经济障碍。在当前的研究中,两种来自假单胞菌属种的纯化的脂肪酶。 (Pseudomonas reinekei和Pseudomonas brenneri)被包裹在藻酸钙基质中,目的是同时增强酶的可重复使用性和稳定性。包封后,通过对硝基苯酚棕榈酸酯底物的酶促水解反应来验证酶-藻酸盐复合物的保留活性。随后检查了酶藻酸盐截留对各种物理化学参数(例如pH,温度,金属离子和溶剂)的影响。发现该包裹物具有最小的有益稳定性增加。然而,如对硝基苯酚棕榈酸酯的残留水解所表明的,观察到藻酸钙包裹的脂肪酶的酶可重复使用性增强(最多3个循环)和稳定性(在4°C长达18天),这表明藻酸钙的潜在作用。在具有成本效益的酶催化中捕获脂肪酶。亮点?两种新的脂肪酶首次被捕获在藻酸钙中。诱捕后,在1M EDTA中观察到统计学上增强的稳定性。新型的包裹脂肪酶显示出极好的储存稳定性和可重复使用性。

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