Khosravi Fatemeh, Fard Ehsan Mohseni, Hosseininezhad Marzieh, Shoorideh Hadi
Ph. D. student of Agriculture Biotechnology University of Zanjan Zanjan Iran.
Department of Plant Production and Genetics Faculty of Agriculture University of Zanjan Zanjan Iran.
Eng Life Sci. 2023 Jul 9;23(8):e2300003. doi: 10.1002/elsc.202300003. eCollection 2023 Aug.
The glycoside hydrolase family contains enzymes that break the glycosidic bonds of carbohydrates by hydrolysis. Inulinase is one of the most important industrial enzymes in the family of Glycoside Hydrolases 32 (GH32). In this study, to identify and classify bacterial inulinases initially, 16,002 protein sequences belonging to the GH32 family were obtained using various databases. The inulin-effective enzymes (endoinulinase and exoinulinase) were identified. Eight endoinulinases (EC 3.2.1.7) and 4318 exoinulinases (EC 3.2.1.80) were found. Then, the localization of endoinulinase and exoinulinase enzymes in the cell was predicted. Among them, two extracellular endoinulinases and 1232 extracellular exoinulinases were found. The biochemical properties of 363 enzymes of the genus , , and (most abundant) showed that exoinulinases have an acid isoelectric point up to the neutral range due to their amino acid length. That is, the smaller the protein (336 aa), the more acidic the pI (4.39), and the larger the protein (1207 aa), the pI is in the neutral range (8.84). Also, a negative gravitational index indicates the hydrophilicity of exoinulinases. Finally, considering the biochemical properties affecting protein stability and post-translational changes studies, one enzyme for endoinulinase and 40 enzymes with desirable characteristics were selected to identify their enzyme production sources. To screen and isolate enzyme-containing strains, now with the expansion of databases and the development of bioinformatics tools, it is possible to classify, review and analyze a lot of data related to different enzyme-producing strains. Although, in laboratory studies, a maximum of 20 to 30 strains can be examined. Therefore, when more strains are examined, finally, strains with more stable and efficient enzymes were selected and introduced for laboratory activities. The findings of this study can help researchers to select the appropriate gene source from introduced strains for cloning and expression heterologous inulinase, or to extract native inulinase from introduced strains.
糖苷水解酶家族包含通过水解作用断裂碳水化合物糖苷键的酶。菊粉酶是糖苷水解酶32(GH32)家族中最重要的工业酶之一。在本研究中,为了初步鉴定和分类细菌菊粉酶,使用各种数据库获得了16002个属于GH32家族的蛋白质序列。鉴定出了菊粉活性酶(内切菊粉酶和外切菊粉酶)。发现了8种内切菊粉酶(EC 3.2.1.7)和4318种外切菊粉酶(EC 3.2.1.80)。然后,预测了内切菊粉酶和外切菊粉酶在细胞中的定位。其中,发现了两种细胞外内切菊粉酶和1232种细胞外外切菊粉酶。对 属、 属和 属(数量最多)的363种酶的生化特性研究表明,由于外切菊粉酶的氨基酸长度,其具有酸性至中性范围的等电点。也就是说,蛋白质越小(336个氨基酸),pI越酸性(4.39),蛋白质越大(1207个氨基酸),pI处于中性范围(8.84)。此外,负的亲水性指数表明外切菊粉酶具有亲水性。最后,考虑到影响蛋白质稳定性和翻译后变化的生化特性研究,选择了一种内切菊粉酶和40种具有理想特性的酶来鉴定它们的酶产生来源。为了筛选和分离含酶菌株,现在随着数据库的扩展和生物信息学工具的发展,可以对与不同产酶菌株相关的大量数据进行分类、审查和分析。尽管在实验室研究中最多可以检测20到30个菌株。因此,当检测更多菌株时,最终选择了具有更稳定、高效酶的菌株并引入实验室活动。本研究结果可以帮助研究人员从引入的菌株中选择合适的基因来源用于克隆和表达异源菊粉酶,或者从引入的菌株中提取天然菊粉酶。