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通过一锅双酶系统化学酶法合成CMP-唾液酸衍生物:三种微生物CMP-唾液酸合成酶的底物灵活性比较

Chemoenzymatic synthesis of CMP-sialic acid derivatives by a one-pot two-enzyme system: comparison of substrate flexibility of three microbial CMP-sialic acid synthetases.

作者信息

Yu Hai, Yu Hui, Karpel Rebekah, Chen Xi

机构信息

Department of Chemistry, University of California, One Shields Avenue, Davis, CA 95616, USA.

出版信息

Bioorg Med Chem. 2004 Dec 15;12(24):6427-35. doi: 10.1016/j.bmc.2004.09.030.

Abstract

Three C terminal His6-tagged recombinant microbial CMP-sialic acid synthetases [EC 2.7.7.43] cloned from Neisseria meningitidis group B, Streptococcus agalactiae serotype V, and Escherichia coli K1, respectively, were evaluated for their ability in the synthesis of CMP-sialic acid derivatives in a one-pot two-enzyme system. In this system, N-acetylmannosamine or mannose analogs were condensed with pyruvate, catalyzed by a recombinant sialic acid aldolase [EC 4.1.3.3] cloned from E. coli K12 to provide sialic acid analogs as substrates for the CMP-sialic acid synthetases. The substrate flexibility and the reaction efficiency of the three recombinant CMP-sialic acid synthetases were compared, first by qualitative screening using thin layer chromatography, and then by quantitative analysis using high performance liquid chromatography. The N. meningitidis synthetase was shown to have the highest expression level, the most flexible substrate specificity, and the highest catalytic efficiency among the three synthetases. Finally, eight sugar nucleotides, including cytidine 5'-monophosphate N-acetylneuraminic acid (CMP-Neu5Ac) and its derivatives with substitutions at carbon-5, carbon-8, or carbon-9 of Neu5Ac, were synthesized in a preparative (100-200 mg) scale from their 5- or 6-carbon sugar precursors using the N. meningitidis synthetase and the aldolase.

摘要

分别从B群脑膜炎奈瑟菌、无乳链球菌血清型V和大肠杆菌K1中克隆得到的三种C末端带有His6标签的重组微生物CMP-唾液酸合成酶[EC 2.7.7.43],在一锅双酶体系中评估了它们合成CMP-唾液酸衍生物的能力。在该体系中,N-乙酰甘露糖胺或甘露糖类似物与丙酮酸缩合,由从大肠杆菌K12中克隆得到的重组唾液酸醛缩酶[EC 4.1.3.3]催化,以提供唾液酸类似物作为CMP-唾液酸合成酶的底物。首先通过薄层色谱进行定性筛选,然后通过高效液相色谱进行定量分析,比较了三种重组CMP-唾液酸合成酶的底物灵活性和反应效率。结果表明,脑膜炎奈瑟菌合成酶在三种合成酶中表达水平最高、底物特异性最灵活且催化效率最高。最后,使用脑膜炎奈瑟菌合成酶和醛缩酶,以其5或6碳糖前体为原料,制备规模(100 - 200 mg)合成了8种糖核苷酸,包括5'-单磷酸胞苷N-乙酰神经氨酸(CMP-Neu5Ac)及其在Neu5Ac的5、8或9位碳上有取代的衍生物。

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