Group of Fungal Genetic Engineering, Federal Research Center "Fundamentals of Biotechnology of the Russian Academy of Sciences", 117312 Moscow, Russia.
Int J Mol Sci. 2023 Jan 31;24(3):2674. doi: 10.3390/ijms24032674.
L-asparaginase (L-ASNase) is a vital enzyme with a broad range of applications in medicine, food industry, and diagnostics. Among various organisms expressing L-ASNases, thermophiles and hyperthermophiles produce enzymes with superior performances-stable and heat resistant thermo-ASNases. This review is an attempt to take a broader view on the thermo-ASNases. Here we discuss the position of thermo-ASNases in the large family of L-ASNases, their role in the heat-tolerance cellular system of thermophiles and hyperthermophiles, and molecular aspects of their thermoactivity and thermostability. Different types of thermo-ASNases exhibit specific L-asparaginase activity and additional secondary activities. All products of these enzymatic reactions are associated with diverse metabolic pathways and are important for mitigating heat stress. Thermo-ASNases are quite distinct from typical mesophilic L-ASNases based on structural properties, kinetic and activity profiles. Here we attempt to summarize the current understanding of the molecular mechanisms of thermo-ASNases' thermoactivity and thermostability, from amino acid composition to structural-functional relationships. Research of these enzymes has fundamental and biotechnological significance. Thermo-ASNases and their improved variants, cloned and expressed in mesophilic hosts, can form a large pool of enzymes with valuable characteristics for biotechnological application.
L-天冬酰胺酶(L-ASNase)是一种重要的酶,在医学、食品工业和诊断学中有广泛的应用。在表达 L-ASNase 的各种生物体中,嗜热菌和超嗜热菌产生的酶具有优越的性能——稳定且耐热的热 ASNase。本综述试图更全面地了解热 ASNase。在这里,我们讨论了热 ASNase 在 L-ASNase 大家族中的位置,它们在嗜热菌和超嗜热菌耐热细胞系统中的作用,以及它们热活性和热稳定性的分子方面。不同类型的热 ASNase 表现出特定的 L-天冬酰胺酶活性和额外的次要活性。这些酶促反应的所有产物都与不同的代谢途径有关,对减轻热应激很重要。热 ASNase 在结构特性、动力学和活性谱方面与典型的中温 L-ASNase 有很大的不同。在这里,我们试图从氨基酸组成到结构-功能关系,总结对热 ASNase 热活性和热稳定性的分子机制的现有理解。这些酶的研究具有基础和生物技术意义。在中温宿主中克隆和表达的热 ASNase 及其改良变体,可以形成一个具有有价值的生物技术应用特性的大型酶库。