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糖原分支酶和淀粉蔗糖酶协同作用对合成糖原样颗粒的结构进行区分。

Differentiated structure of synthetic glycogen-like particle by the combined action of glycogen branching enzymes and amylosucrase.

机构信息

Department of Food Science and Biotechnology, Carbohydrate Bioproduct Research Center, Sejong University, 209 Neungdong-ro, Gwangjin-gu, Seoul 05006, Republic of Korea.

Department of Food Science and Technology, Chungnam National University, 99 Daehak-ro, Daejeon 34134, Republic of Korea.

出版信息

Int J Biol Macromol. 2022 Jan 15;195:152-162. doi: 10.1016/j.ijbiomac.2021.11.153. Epub 2021 Nov 29.

Abstract

Glycogen-like particles (GLPs) were built up from sucrose by applying de novo one-pot enzymatic process of amylosucrase (ASase; 6 U·mL) and glycogen branching enzymes (GBEs; 0.001 and 0.005 U·mL). Due to different chain-length transferring patterns of GBEs, structurally differentiated GLPs were synthesized. Yields of GLPs synthesized at pH 7.0 and 30 °C were improved by increasing the GBE/ASase ratio. Branching degrees of GLPs obviously was increased along with the ratio of GBEs, of which result was directly supported by shortened branch-chain length with greater GBE activity. Long branch chains seemed to play as efficient acceptor molecules to bind newly transferred branch chains especially at lower ratio of GBE/ASase, resulting in greater molecular weight and size of GLP with higher proportion of them. Molecular weight, size, and density of GLPs were ranged from 7.37 × 10 to 1.94 × 10 g·mol, from 23.70 to 52.65 nm, and from 7.99 to 374.32 g·mol·nm, respectively. By increasing GBE/ASase ratio, more compact GLP architecture was fabricated due to increased weight and reduced size with exception of a unique GBE. GLPs were efficiently synthesized by two different glycosyltransferases, and their chemical structures were controllable by source and ratio of GBEs due to their different branch-chain transferring specificity.

摘要

糖原样颗粒(GLPs)是通过应用淀粉蔗糖酶(ASase;6 U·mL)和糖原分支酶(GBE;0.001 和 0.005 U·mL)的从头一锅式酶促过程由蔗糖构建而成。由于 GBE 的不同链长转移模式,合成了结构不同的 GLPs。在 pH 7.0 和 30°C 下,通过增加 GBE/ASase 比来提高 GLPs 的产率。GLPs 的支化度随着 GBEs 比例的增加而明显提高,这一结果直接得到了更大 GBE 活性的支链缩短的支持。长支链似乎作为有效的受体分子与新转移的支链结合,尤其是在 GBE/ASase 较低的比例下,从而导致具有更高比例的 GLP 的更大分子量和尺寸。GLPs 的分子量、尺寸和密度分别在 7.37×10 到 1.94×10 g·mol、23.70 到 52.65 nm 和 7.99 到 374.32 g·mol·nm 范围内变化。通过增加 GBE/ASase 比,可以制备更紧凑的 GLP 结构,因为除了独特的 GBE 外,重量增加和尺寸减小。通过两种不同的糖基转移酶可以有效地合成 GLPs,并且由于其不同的支链转移特异性,它们的化学结构可以通过 GBE 的来源和比例来控制。

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