首页> 外文期刊>Journal of Agricultural and Food Chemistry >One-Pot Synthesis of Cycloamyloses from Sucrose by Dual Enzyme Treatment: Combined Reaction of Amylosucrase and 4-α-GIucanotransferase
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One-Pot Synthesis of Cycloamyloses from Sucrose by Dual Enzyme Treatment: Combined Reaction of Amylosucrase and 4-α-GIucanotransferase

机译:双重酶处理由蔗糖一锅法合成环糊精:淀粉酶与4-α-葡糖基转移酶的联合反应

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摘要

Amylose-like α-(l,4)-glucan known as the most favorable substrate for the enzymatic production of cycloamyloses (CAs) using 4-α-glucanotransferase has a solubility issue, which requires an additional solubilization process. In our study, two glucosyltransferases, Synechocystis 4-a-glucanotransferase and Neisseria amylosucrase, were adopted to develop an efficient biocatalytic production process of CAs directly from sucrose. From one-pot synthesis, the maximum CA yield (9.6%, w/w) with 0.3 M sucrose was achieved with 10 units/mL of amylosucrase and 0.1 unit/mL of 4-α-glucanotransferase at 40 °C for a 3 h reaction in a simultaneous dual enzyme reaction mode. The size of linear α-(1,4)-glucan was positively related to the CA productivity by 4- α-glucanotransferase in a hyperbolic manner. Using our innovative bioprocess, there was no practical limitation on the initial sucrose concentration and no use of insoluble linear α-(1,4)-glucan substrate. Consequently, the concomitant dual enzyme reaction converted sucrose directly to CAs via in situ transient linear α-(l,4)-glucan as an soluble intermediate.
机译:已知直链淀粉样α-(1,4)-葡聚糖是使用4-α-葡糖基转移酶酶促生产环淀粉(CA)的最有利底物,存在溶解度问题,这需要额外的增溶过程。在我们的研究中,采用了两个葡糖基转移酶,即集胞藻4-a-葡糖基转移酶和奈瑟氏球菌淀粉酶,以直接从蔗糖中开发CA的有效生物催化生产工艺。从一锅法合成,在40°C下,用10单位/ mL的淀粉酶和0.1单位/ mL的4-α-葡萄糖基转移酶,在0.3°C的蔗糖下,CA的最大产量(9.6%,w / w)同时双酶反应模式进行反应。线性α-(1,4)-葡聚糖的大小与4-α-葡聚糖转移酶以双曲线方式与CA产量成正相关。使用我们创新的生物工艺,最初的蔗糖浓度没有实际限制,并且不使用不溶性线性α-(1,4)-葡聚糖底物。因此,伴随的双酶反应通过作为可溶性中间体的原位瞬时线性α-(1,4)-葡聚糖将蔗糖直接转化为CA。

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