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通过对胞苷-5'-单磷酸去磷酸化抑制其固有唾液酸酶活性来增强细菌α(2,6)-唾液酸转移酶反应。

Enhanced Bacterial α(2,6)-Sialyltransferase Reaction through an Inhibition of Its Inherent Sialidase Activity by Dephosphorylation of Cytidine-5'-Monophosphate.

作者信息

Kang Ji-Yeon, Lim Se-Jong, Kwon Ohsuk, Lee Seung-Goo, Kim Ha Hyung, Oh Doo-Byoung

机构信息

Synthetic Biology and Bioengineering Research Center, Korea Research Institute of Bioscience & Biotechnology (KRIBB), Daejeon, Korea.

Synthetic Biology and Bioengineering Research Center, Korea Research Institute of Bioscience & Biotechnology (KRIBB), Daejeon, Korea; Biosystems and Bioengineering Program, University of Science and Technology (UST), Daejeon, Korea.

出版信息

PLoS One. 2015 Jul 31;10(7):e0133739. doi: 10.1371/journal.pone.0133739. eCollection 2015.

Abstract

Bacterial α(2,6)-sialyltransferases (STs) from Photobacterium damsela, Photobacterium sp. JT-ISH-224, and P. leiognathi JT-SHIZ-145 were recombinantly expressed in Escherichia coli and their ST activities were compared directly using a galactosylated bi-antennary N-glycan as an acceptor substrate. In all ST reactions, there was an increase of sialylated glycans at shorter reaction times and later a decrease in prolonged reactions, which is related with the inherent sialidase activities of bacterial STs. These sialidase activities are greatly increased by free cytidine monophosphate (CMP) generated from a donor substrate CMP-N-acetylneuraminic acid (CMP-Neu5Ac) during the ST reactions. The decrease of sialylated glycans in prolonged ST reaction was prevented through an inhibition of sialidase activity by simple treatment of alkaline phosphatase (AP), which dephosphorylates CMP to cytidine. Through supplemental additions of AP and CMP-Neu5Ac to the reaction using the recombinant α(2,6)-ST from P. leiognathi JT-SHIZ-145 (P145-ST), the content of bi-sialylated N-glycan increased up to ~98% without any decrease in prolonged reactions. This optimized P145-ST reaction was applied successfully for α(2,6)-sialylation of asialofetuin, and this resulted in a large increase in the populations of multi-sialylated N-glycans compared with the reaction without addition of AP and CMP-Neu5Ac. These results suggest that the optimized reaction using the recombinant P145-ST readily expressed from E. coli has a promise for economic glycan synthesis and glyco-conjugate remodeling.

摘要

来自美人鱼发光杆菌、某种发光杆菌JT - ISH - 224和鱼精发光杆菌JT - SHIZ - 145的细菌α(2,6)-唾液酸转移酶(STs)在大肠杆菌中进行重组表达,并直接使用半乳糖基化的双天线N -聚糖作为受体底物比较它们的ST活性。在所有的ST反应中,唾液酸化聚糖在较短反应时间内增加,而在延长反应后期减少,这与细菌STs固有的唾液酸酶活性有关。这些唾液酸酶活性在ST反应过程中由供体底物CMP - N -乙酰神经氨酸(CMP - Neu5Ac)产生的游离胞苷单磷酸(CMP)而大大增加。通过简单的碱性磷酸酶(AP)处理抑制唾液酸酶活性,可防止ST延长反应中唾液酸化聚糖的减少,碱性磷酸酶将CMP去磷酸化为胞苷。通过向使用鱼精发光杆菌JT - SHIZ - 145的重组α(2,6)-ST(P145 - ST)的反应中补充添加AP和CMP - Neu5Ac,双唾液酸化N -聚糖的含量增加至约98%,且在延长反应中没有任何减少。这种优化的P145 - ST反应成功地应用于去唾液酸胎球蛋白的α(2,6)-唾液酸化,与不添加AP和CMP - Neu5Ac的反应相比,这导致多唾液酸化N -聚糖的群体大幅增加。这些结果表明,使用从大肠杆菌中易于表达的重组P145 - ST进行的优化反应在经济的聚糖合成和糖缀合物重塑方面具有前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ed4/4521712/ac9b8899d7bd/pone.0133739.g001.jpg

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