CIISA - Centro de Investigação Interdisciplinar Em Sanidade Animal, Faculdade de Medicina Veterinária, Universidade de Lisboa, 1300-477, Lisboa, Portugal.
NZYTech - Genes and Enzymes, Estrada do Paço Do Lumiar, Campus do Lumiar, Edifício E, 1649-038, Lisboa, Portugal.
Sci Rep. 2021 May 6;11(1):9706. doi: 10.1038/s41598-021-89278-1.
In the present study, 199 pre-selected Carbohydrate-Active enZymes (CAZymes) and sulfatases were assessed, either alone or in combination, to evaluate their capacity to disrupt Laminaria digitata cell wall, with the consequent release of interesting nutritional compounds. A previously characterized individual alginate lyase, belonging to the family 7 of polysaccharide lyases (PL7) and produced by Saccharophagus degradans, was shown to be the most efficient in the in vitro degradation of L. digitata cell wall. The alginate lyase treatment, compared to the control, released up to 7.11 g/L of reducing sugars (p < 0.001) and 8.59 mmol/100 g dried alga of monosaccharides (p < 0.001), and reduced cell wall fluorescence intensity by 39.1% after staining with Calcofluor White (p = 0.001). The hydrolysis of gel-forming polymer alginate by the alginate lyase treatment could prevent the trapping of fatty acids and release beneficial monounsaturated fatty acids, particularly 18:1c9 (p < 0.001), to the extracellular medium. However, no liberation of proteins (p > 0.170) or pigments (p > 0.070) was observed. Overall, these results show the ability of an individual alginate lyase, from PL7 family, to partially degrade L. digitata cell wall under physiological conditions. Therefore, this CAZyme can potentially improve the bioavailability of L. digitata bioactive compounds for monogastric diets, with further application in feed industry.
在本研究中,评估了 199 种预先选定的碳水化合物活性酶(CAZymes)和硫酸酯酶,单独或组合使用,以评估它们破坏海带细胞壁的能力,从而释放出有趣的营养化合物。一种先前表征的海藻酸盐裂解酶,属于多糖裂解酶家族 7(PL7),由 Saccharophagus degradans 产生,被证明是体外降解海带细胞壁最有效的酶。与对照组相比,海藻酸盐裂解酶处理释放出高达 7.11 g/L 的还原糖(p<0.001)和 8.59 mmol/100 g 干藻的单糖(p<0.001),并且在用 Calcofluor White 染色后,细胞壁荧光强度降低了 39.1%(p=0.001)。海藻酸盐裂解酶处理凝胶形成聚合物海藻酸盐的水解可以防止脂肪酸的捕获,并将有益的单不饱和脂肪酸,特别是 18:1c9(p<0.001)释放到细胞外介质中。然而,没有观察到蛋白质(p>0.170)或色素(p>0.070)的释放。总的来说,这些结果表明,PL7 家族的一种单一海藻酸盐裂解酶能够在生理条件下部分降解海带细胞壁。因此,这种 CAZyme 有可能提高海带生物活性化合物对单胃动物饮食的生物利用度,并在饲料工业中有进一步的应用。