Jesús-de la Cruz Kristal, Álvarez-González Carlos Alfonso, Peña Emyr, Morales-Contreras José Antonio, Ávila-Fernández Ángela
Laboratorio de Acuacultura, DACBiol-UJAT, Carr. Villahermosa-Cárdenas Km 0.5, 86139 Villahermosa, Tabasco México.
Cátedra Consejo Nacional de Ciencia y Tecnología-UJAT, Villahermosa, Tabasco México.
3 Biotech. 2018 Apr;8(4):186. doi: 10.1007/s13205-018-1208-0. Epub 2018 Mar 16.
In fishes, trypsins are adapted to different environmental conditions, and the biochemical and kinetic properties of a broad variety of native isoforms have been studied. Proteolytic enzymes remain in high demand in the detergent, food, and feed industries; however, our analysis of the literature showed that, in the last decade, some fish trypsins have been studied for the synthesis of industrial peptides and for specific biomedical uses as antipathogenic agents against viruses and bacteria, which have been recently patented. In addition, innovative strategies of trypsin administration have been studied to ensure that trypsins retain their properties until they exert their action. Biomedical uses require the production of high-quality enzymes. In this context, the production of recombinant trypsins is an alternative. For this purpose, -based systems have been tested for the production of fish trypsins; however, -based systems also seem to show great potential in the production of fish trypsins with higher production quality. On the other hand, there is a lack of information regarding the specific structures, biochemical and kinetic properties, and characteristics of trypsins produced using heterologous systems. This review describes the potential uses of fish trypsins in biomedicine and the enzymatic and structural properties of native and recombinant fish trypsins obtained to date, outlining some prospects for their study.
在鱼类中,胰蛋白酶能适应不同的环境条件,并且已经对多种天然同工型的生化和动力学特性进行了研究。蛋白酶在洗涤剂、食品和饲料行业中仍然有很高的需求;然而,我们对文献的分析表明,在过去十年中,一些鱼类胰蛋白酶已被研究用于合成工业肽以及作为针对病毒和细菌的抗病原体剂用于特定的生物医学用途,这些用途最近已获得专利。此外,还研究了胰蛋白酶给药的创新策略,以确保胰蛋白酶在发挥作用之前保持其特性。生物医学用途需要生产高质量的酶。在这种情况下,重组胰蛋白酶的生产是一种选择。为此,已经测试了基于 - 的系统用于生产鱼类胰蛋白酶;然而,基于 - 的系统在生产具有更高生产质量的鱼类胰蛋白酶方面似乎也显示出巨大潜力。另一方面,关于使用异源系统生产的胰蛋白酶的具体结构、生化和动力学特性以及特征的信息匮乏。本综述描述了鱼类胰蛋白酶在生物医学中的潜在用途以及迄今为止获得的天然和重组鱼类胰蛋白酶的酶学和结构特性,概述了它们的一些研究前景。