Shafiei Melika, Shafiei Maral, Mohseni Sani Naeema, Guo Wangbiao, Guo Shuaiqi, Vali Hojatollah, Akbari Noghabi Kambiz
Department of Energy and Environmental Biotechnology, National Institute of Genetic Engineering and Biotechnology (NIGEB), Tehran, Iran.
School of Medicine, Yale University, West Haven, CT, United States.
Front Microbiol. 2024 Nov 21;15:1394617. doi: 10.3389/fmicb.2024.1394617. eCollection 2024.
Selecting a suitable cyanobacterial strain and developing easy-to-afford purification processes are two crucial aspects impacting the optimal production yield and appropriate purity of C-phycocyanin (C-PC). sp. MMK01, a highly efficient C-PC-producing bacterium, was identified among four cyanobacterial isolates using morphological characteristics and 16S rRNA gene sequencing. The purification process of C-PC began with ammonium sulfate precipitation, leading to a purity index (PI) of 4.04. Subsequent purification through ion exchange chromatography ultimately resulted in an ultra-highly purified form of C-PC with a significant PI of 5.82. SDS-PAGE analysis of purified C-PC showed the presence of two distinct bands, (13 kDa) and (15 kDa). Significantly effective at scavenging free radicals, C-PC also inhibits the viability of human lung cancer cells (Calu-6). Antibacterial, anti-inflammatory, antioxidant, and cancer-preventive compounds were detected in the MMK01 cells' methanolic extract following GC-MS analysis. The promising results indicate that sp. MMK01 has a great deal of potential for producing C-PC that is on par with strains found in the market, and the tried-and-true two-step purification process proved to work well to achieve an ultra-highly purified form of C-PC.
选择合适的蓝藻菌株并开发经济实惠的纯化工艺是影响藻蓝蛋白(C-PC)最佳产量和适当纯度的两个关键因素。通过形态特征和16S rRNA基因测序,在四种蓝藻分离株中鉴定出一种高效产C-PC的细菌——MMK01菌株。C-PC的纯化过程始于硫酸铵沉淀,纯度指数(PI)为4.04。随后通过离子交换色谱法进行纯化,最终得到了PI高达5.82的超高度纯化形式的C-PC。纯化后的C-PC的SDS-PAGE分析显示存在两条明显的条带,分别为(13 kDa)和(15 kDa)。C-PC在清除自由基方面具有显著效果,还能抑制人肺癌细胞(Calu-6)的活力。气相色谱-质谱联用(GC-MS)分析表明,在MMK01细胞的甲醇提取物中检测到了抗菌、抗炎、抗氧化和防癌化合物。这些有前景的结果表明,MMK01菌株在生产与市场上现有菌株相当的C-PC方面具有很大潜力,并且经过验证的两步纯化工艺被证明能很好地实现C-PC的超高度纯化形式。