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两种神经氨酸苷酶的动力学特征及其应用潜力评估。

Kinetic characterization of two neuraminic acid synthases and evaluation of their application potential.

机构信息

University of Zagreb, Faculty of Chemical Engineering and Technology, Trg Marka Marulića 19, 10000, Zagreb, Croatia.

Prozomix Limited, Station Court, Haltwhistle, Northumberland, NE49 9HN, UK.

出版信息

Appl Microbiol Biotechnol. 2024 Aug 21;108(1):446. doi: 10.1007/s00253-024-13277-1.

Abstract

Neuraminic acid synthases are an important yet underexplored group of enzymes. Thus, in this research, we performed a detailed kinetic and stability analysis and a comparison of previously known neuraminic acid synthase from Neisseria meningitidis, and a novel enzyme, PNH, obtained from a metagenomic library. A systematic analysis revealed a high level of similarity of PNH to other known neuraminic acid synthases, except for its pH optimum, which was found to be at 5.5 for the novel enzyme. This is the first reported enzyme from this family that prefers an acidic pH value. The effect of different metal cofactors on enzyme activity, i.e. Co, Mn and Mg, was studied systematically. The kinetics of neuraminic acid synthesis was completely elucidated, and an appropriate kinetic model was proposed. Enzyme stability study revealed that the purified enzyme exhibits changes in its structure during time as observed by differential light scattering, which cause a drop in its activity and protein concentration. The operational enzyme stability for the neuraminic acid synthase from N. meningitidis is excellent, where no activity drop was observed during the batch reactor experiments. In the case of PNH, some activity drop was observed at higher concentration of substrates. The obtained results present a solid platform for the future application of these enzymes in the synthesis of sialic acids. KEY POINTS: • A novel neuraminic acid synthase was characterized. • The effect of cofactors on NeuS activity was elucidated. • Kinetic and stability characterization of two neuraminic acid synthases was performed.

摘要

神经氨酸合成酶是一组重要但尚未充分研究的酶。因此,在这项研究中,我们对来自脑膜炎奈瑟菌的已知神经氨酸合成酶和从宏基因组文库中获得的新型酶 PNH 进行了详细的动力学和稳定性分析及比较。系统分析表明,PNH 与其他已知的神经氨酸合成酶具有高度的相似性,但 pH 最适值不同,新型酶的 pH 最适值为 5.5。这是该家族中第一个报道的偏爱酸性 pH 值的酶。我们还系统地研究了不同金属辅因子(Co、Mn 和 Mg)对酶活性的影响。我们完全阐明了神经氨酸合成的动力学,并提出了一个合适的动力学模型。酶稳定性研究表明,纯化后的酶在时间过程中发生结构变化,这会导致其活性和蛋白浓度下降。来自脑膜炎奈瑟菌的神经氨酸合成酶的操作酶稳定性非常出色,在批式反应器实验中没有观察到活性下降。对于 PNH,在较高浓度的底物下,观察到一些活性下降。获得的结果为这些酶在唾液酸合成中的未来应用提供了坚实的平台。关键点:

  • 对一种新型神经氨酸合成酶进行了表征。

  • 阐明了辅因子对 NeuS 活性的影响。

  • 对两种神经氨酸合成酶进行了动力学和稳定性表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/793f/11339185/036f50a7f4a5/253_2024_13277_Fig1_HTML.jpg

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