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首页> 外文期刊>Polymers >Synthesis of Hyperbranched Glycoconjugates by the Combined Action of Potato Phosphorylase and Glycogen Branching Enzyme from Deinococcus geothermalis
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Synthesis of Hyperbranched Glycoconjugates by the Combined Action of Potato Phosphorylase and Glycogen Branching Enzyme from Deinococcus geothermalis

机译:地热球菌马铃薯磷酸化酶与糖原分支酶的联合作用合成超支化糖缀合物

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Potato phosphorylase is able to synthesize linear polyglucans from maltoheptaose primers. By coupling maltoheptaose to butane diamine, tris(2-aminoethyl)amine and amine functionalized amine functionalized poly ethyleneglycol (PEG), new primer molecules became available. The resulting di-, tri- and macro-primers were incubated with potato phosphorylase and glycogen branching enzyme from Deinococcus geothermalis. Due to the action of both enzymes, hyperbranched polyglucan arms were grown from the maltoheptaose derivatives with a maximum degree of branching of 11%. The size of the synthesized hyperbranched polyglucans could be controlled by the ratio monomer over primer. About 60%–80% of the monomers were incorporated in the glycoconjugates. The resulting hyperbranched glycoconjugates were subjected to Dynamic Light Scattering (DLS) measurements in order to determine the hydrodynamic radius and it became obvious that the structures formed agglomerates in the range of 14–32 nm.
机译:马铃薯磷酸化酶能够从麦芽七糖引物合成线性聚葡聚糖。通过将麦芽庚糖与丁烷二胺,三(2-氨基乙基)胺和胺官能化的胺官能化的聚乙二醇(PEG)偶联,新的引物分子变得可用。将所得的二,三和大引物与马铃薯磷酸化酶和地热球菌的糖原分支酶一起孵育。由于这两种酶的作用,从麦芽七糖衍生物中生长出超支化的聚葡聚糖臂,最大分支度为11%。合成的超支化多糖的大小可以通过单体与引物的比例来控制。大约60%–80%的单体被掺入糖结合物中。为了确定流体动力学半径,对所得的超支化糖缀合物进行了动态光散射(DLS)测量,并且很明显,形成的结构在14–32 nm范围内形成了团聚体。

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