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在与水混溶的有机溶剂中合成果聚糖。

Synthesis of levan in water-miscible organic solvents.

作者信息

Castillo E, López-Munguía A

机构信息

Departamento de Ingeniería Celular y Biocatálisis, Instituto de Biotecnología, UNAM, Apartado Postal 510-3, Cuernavaca, Morelos 62271, Mexico.

出版信息

J Biotechnol. 2004 Oct 19;114(1-2):209-17. doi: 10.1016/j.jbiotec.2004.06.003.

Abstract

The synthesis of levan using a levansucrase from a strain of Bacillus subtilis was studied in the presence of the water-miscible solvents: acetone, acetonitrile and 2-methyl-2-propanol (2M2P). It was found that while the enzyme activity is only slightly affected by acetone and acetonitrile, 2M2P has an activating effect increasing the total activity 35% in 40-50% (v/v) 2M2P solutions at 30 degrees C. The enzyme is highly stable in water at 30 degrees C; however, incubation in the presence of 15 and 50% (v/v) 2M2P reduced the half-life time to 23.6 and 1.8 days, respectively. This effect is reversed in 83% 2M2P, where a half-life time of 11.8 days is observed. The presence of 2M2P in the system increases the transfer/hydrolysis ratio of levansucrase. As the reaction proceeds with 10% (w/v) sucrose in 50/50 water/2M2P sucrose is converted to levan and an aqueous two-phase system (2M2P/Levan) is formed and more sucrose can be added in a fed batch mode. It is shown that high molecular weight levan is obtained as an hydrogel and may be easily recovered from the reaction medium. However, when high initial sucrose concentrations (40% (w/v) in 50/50 water/2M2P) are used, an aqueous two-phase system (2M2P/sucrose) is induce, where the synthesized levan has a similar molecular weight distribution as in water and remains in solution.

摘要

在水混溶性溶剂(丙酮、乙腈和2-甲基-2-丙醇(2M2P))存在的情况下,研究了使用枯草芽孢杆菌菌株的果聚糖蔗糖酶合成果聚糖的过程。研究发现,虽然丙酮和乙腈对酶活性的影响很小,但2M2P具有激活作用,在30℃下40 - 50%(v/v)的2M2P溶液中,总活性可提高35%。该酶在30℃的水中高度稳定;然而,在15%和50%(v/v)的2M2P存在下孵育,半衰期分别降至23.6天和1.8天。在83%的2M2P中这种影响会逆转,观察到半衰期为11.8天。体系中2M2P的存在增加了果聚糖蔗糖酶的转移/水解比。随着反应在50/50水/2M2P体系中以10%(w/v)的蔗糖进行,蔗糖转化成果聚糖并形成水两相体系(2M2P/果聚糖),可以以补料分批模式添加更多蔗糖。结果表明,高分子量果聚糖以水凝胶形式获得,并且可以很容易地从反应介质中回收。然而,当使用高初始蔗糖浓度(在50/50水/2M2P中为40%(w/v))时,会诱导形成水两相体系(2M2P/蔗糖),其中合成的果聚糖具有与在水中相似的分子量分布并保留在溶液中。

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