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