Laboratoire de Génie Enzymatique et de Microbiologie, Equipe de Biotechnologie des Algues, Ecole Nationale d'Ingénieurs de Sfax, Université de Sfax, 3038, Sfax, Tunisia.
Laboratoire de Biochimie et de Génie Enzymatique des Lipases, Ecole Nationale d'Ingénieurs de Sfax, Université de Sfax, 3018, Sfax, Tunisia.
Environ Sci Pollut Res Int. 2021 Oct;28(37):51046-51059. doi: 10.1007/s11356-021-14357-9. Epub 2021 May 11.
Amylases are enzymes required for starch degradation and are naturally produced by many microorganisms. These enzymes are used in several fields such as food processing, beverage, and medicine as well as in the formulation of enzymatic detergents proving their significance in modern biotechnology. In this study, a three-stage growth mode was applied to enhance starch production and amylase detection from Chlorella vulgaris. Stress conditions applied in the second stage of cultivation led to an accumulation of proteins (75% DW) and starch (21% DW) and a decrease in biomass. Amylase activities were detected and they showed high production levels especially on day 3 (35 U/ml) and day 5 (22.5 U/ml) of the second and third stages, respectively. The bioinformatic tools used to seek amylase protein sequences from TSA database of C. vulgaris revealed 7 putative genes encoding for 4 α-amylases, 2 β-amylases, and 1 isoamylase. An in silico investigation showed that these proteins are different in their lengths as well as in their cellular localizations and oligomeric states though they share common features like CSRs of GH13 family or active site of GH14 family. In brief, this study allowed for the production and in silico characterization of amylases from C. vulgaris.
淀粉是一种酶,它可以降解淀粉,许多微生物都能自然产生。这些酶被广泛应用于食品加工、饮料、医药和酶洗涤剂配方等领域,证明了它们在现代生物技术中的重要性。在本研究中,采用了三阶段生长模式来提高小球藻的淀粉产量和淀粉酶检测水平。在培养的第二阶段施加的应激条件导致蛋白质(75%DW)和淀粉(21%DW)的积累,而生物量则减少。检测到了淀粉酶活性,它们在第二阶段的第 3 天(35 U/ml)和第三阶段的第 5 天(22.5 U/ml)显示出高产水平。使用生物信息学工具从 TSA 数据库中寻找小球藻的淀粉酶蛋白序列,揭示了 7 个可能的基因,它们编码 4 种 α-淀粉酶、2 种 β-淀粉酶和 1 种异淀粉酶。计算机模拟研究表明,这些蛋白质在长度、细胞定位和寡聚状态上存在差异,尽管它们具有一些共同特征,如 GH13 家族的 CSR 或 GH14 家族的活性位点。总之,本研究实现了小球藻淀粉酶的生产和计算机模拟特征分析。