Applied Biotechnology Group, Universidad Europea de Madrid, Urbanización El Bosque, E-28670 Villaviciosa de Odón, Madrid, Spain.
Applied Biotechnology Group, Universidad Europea de Madrid, Urbanización El Bosque, E-28670 Villaviciosa de Odón, Madrid, Spain; Grupo de Investigación en Ciencias Naturales y Exactas, GICNEX, Universidad de la Costa, CUC, Calle 58 # 55-66, 080002 Barranquilla, Colombia; Department of Biochemistry and Molecular Biology, Faculty of Biology, Universidad Complutense de Madrid, E-28040 Madrid, Spain.
Biotechnol Adv. 2024 Dec;77:108473. doi: 10.1016/j.biotechadv.2024.108473. Epub 2024 Nov 5.
Deaminases, ubiquitous enzymes found in all living organisms from bacteria to humans, serve diverse and crucial functions. Notably, purine and pyrimidine deaminases, while biologically essential for regulating nucleotide pools, exhibit exceptional versatility in biotechnology. This review systematically consolidates current knowledge on deaminases, showcasing their potential uses and relevance in the field of biotechnology. Thus, their transformative impact on pharmaceutical manufacturing is highlighted as catalysts for the synthesis of nucleic acid derivatives. Additionally, the role of deaminases in food bioprocessing and production is also explored, particularly in purine content reduction and caffeine production, showcasing their versatility in this field. The review also delves into most promising biomedical applications including deaminase-based GDEPT and genome and transcriptome editing by deaminase-based systems. All in all, illustrated with practical examples, we underscore the role of purine and pyrimidine deaminases in advancing sustainable and efficient biotechnological practices. Finally, the review highlights future challenges and prospects in deaminase-based biotechnological processes, encompassing both industrial and medical perspectives.
脱氨酶是一种普遍存在于从细菌到人类等所有生物体中的酶,具有多种至关重要的功能。特别是嘌呤和嘧啶脱氨酶,虽然在调节核苷酸池方面具有生物学上的重要性,但在生物技术中具有出色的多功能性。本综述系统地整合了脱氨酶的现有知识,展示了它们在生物技术领域的潜在用途和相关性。因此,强调了它们作为核酸衍生物合成的催化剂对制药制造的变革性影响。此外,还探讨了脱氨酶在食品生物加工和生产中的作用,特别是在降低嘌呤含量和生产咖啡因方面,展示了它们在该领域的多功能性。该综述还深入探讨了最有前途的生物医学应用,包括基于脱氨酶的 GDEPT 和基于脱氨酶的系统进行基因组和转录组编辑。总之,通过实际案例说明了嘌呤和嘧啶脱氨酶在推进可持续和高效生物技术实践中的作用。最后,该综述突出了基于脱氨酶的生物技术过程中的未来挑战和前景,涵盖了工业和医学两个方面。