The Surface Display of the Alginate Lyase on the Cells of Yarrowia lipolytica for Hydrolysis of Alginate

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Jing Li

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...  

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Ivan A. Laptev ◽  
Tatiana K. Konstantinova ◽  
Sergey P. Sineoky

2021 ◽  
Vol 12 ◽  
Author(s):  
Lu Liu ◽  
Zhipeng Wang ◽  
Zhihong Zheng ◽  
Ze Li ◽  
Xiaofeng Ji ◽  
...  

Alginate lyase possesses wide application prospects for the degradation of brown algae and preparation of alginate oligosaccharides, and its degradation products display a variety of biological activities. Although many enzymes of this type have been reported, alginate lyases with unique properties are still relatively rare. In the present work, an alginate lyase abbreviated as Alyw203 has been cloned from Vibrio sp. W2 and expressed in food-grade Yarrowia lipolytica. The Alyw203 gene consists of an open reading frame (ORF) of 1,566 bp containing 521 amino acids, of which the first 17 amino acids are considered signal peptides, corresponding to secretory features. The peak activity of the current enzyme appears at 45°C with a molecular weight of approximately 57.0 kDa. Interestingly, Alyw203 exhibits unique heat recovery performance, returning above 90% of its initial activity in the subsequent incubation for 20 min at 10°C, which is conducive to the recovery of current enzymes at low-temperature conditions. Meanwhile, the highest activity is obtained under alkaline conditions of pH 10.0, showing outstanding pH stability. Additionally, as an alginate lyase independent of NaCl and resistant to metal ions, Alyw203 is highly active in various ionic environments. Moreover, the hydrolyzates of present enzymes are mainly concentrated in the oligosaccharides of DP1–DP2, displaying perfect product specificity. The alkali suitability, heat recovery performance, and high oligosaccharide yield of Alyw203 make it a potential candidate for industrial production of the monosaccharide and disaccharide.


Author(s):  
Subaryono Subaryono

Alginate is a natural hydrocolloid that is used in food and non food industries. The weakness ofnative alginate cause the limited uses of this material in industry. Some weaknesses of nativealginate had been successfully overcome either by the modification of alginate structure orinteraction of alginate with another substances. The low solubility of alginate and its low stabilityagainst acid had been successfully resolved with esterification of alginate backbone with propyleneglycol, producing propylene glycol alginate (PGA). The high syneresis of alginate gel had beensuccessfully overcome with partial hydrolysis, producing short chain alginate, introduce shortchain polyguluronate and interact alginate with other substances such as locust bean gum (LBG).Alginate hydrophilic properties could be changed into amphiphilic by long alkyl chain substitutiontowards part of the polysaccharides group. The ability of alginate to promote the growth of probioticbacteria could be done by enzymatic hydrolysis of alginate using alginate lyase producingalginate oligosaccharides (AOS). The modification of alginate had opened the big opportunity forthe uses of alginate and its derivatives, both in food and non food sectors.


2013 ◽  
Vol 90 (8) ◽  
pp. 1131-1137 ◽  
Author(s):  
Nelma Gomes ◽  
Adelaide Braga ◽  
José A. Teixeira ◽  
Isabel Belo

2013 ◽  
Vol 90 (8) ◽  
pp. 1139-1139 ◽  
Author(s):  
Adelaide Braga ◽  
Nelma Gomes ◽  
José A. Teixeira ◽  
Isabel Belo

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