Zhang Mengmeng, Wu Wenjia, Ren Yao, Li Xiaofeng, Tang Yuqian, Min Tian, Lai Furao, Wu Hui
College of Food Sciences and Engineering, South China University of Technology , Guangzhou, Guangdong 510640, China.
College of Light Industry, Textile and Food Engineering, Sichuan University , Chengdu 610065, China.
J Agric Food Chem. 2017 Feb 15;65(6):1146-1157. doi: 10.1021/acs.jafc.6b05218. Epub 2017 Feb 2.
In our previous study, three novel polysaccharides, named MC-1, MC-2, and MC-3, were separated from the roots of maca (Lepidium meyenii), which is a food source from the Andes region. The structural information and immunomodulatory activity of MC-1 were then investigated. The structure and activity of MC-2 are still unknown. In this study, structural characterization revealed that MC-2 has an average molecular weight of 9.83 kDa and is composed of arabinose (20.9%), mannose (4.5%), glucose (71.9%), and galactose (2.7%). The main linkage types of MC-2 were proven to be (1→5)-α-l-Ara, (1→3)-α-l-Man, (1→)-α-d-Glc, (1→4)-α-d-Glc, (1→6)-α-d-Glc, and (1→6)-β-d-Gal by methylation and NMR analyses. Congo red assay showed that MC-2 possesses a triple-helix conformation. Immunostimulating assays indicated that MC-2 could induce M1 polarization of original macrophages and convert M2 macrophages into M1 phenotype. Although MC-2 could not shift M1 macrophages into M2, it could still inhibit inflammatory reactions induced by lipopolysaccharide. Furthermore, Toll-like receptor 2, tTll-like receptor 4, complement receptor 3, and mannose receptor were confirmed as the membrane receptors for MC-2 on macrophages. These results indicate that MC-2 could potentially be used toward hypoimmunity and tumor therapies.
在我们之前的研究中,从玛咖(Lepidium meyenii)根部分离出三种新型多糖,分别命名为MC - 1、MC - 2和MC - 3,玛咖是一种来自安第斯地区的食物来源。随后对MC - 1的结构信息和免疫调节活性进行了研究。MC - 2的结构和活性仍然未知。在本研究中,结构表征显示MC - 2的平均分子量为9.83 kDa,由阿拉伯糖(20.9%)、甘露糖(4.5%)、葡萄糖(71.9%)和半乳糖(2.7%)组成。通过甲基化和核磁共振分析证明,MC - 2的主要连接类型为(1→5)-α - l - 阿拉伯糖、(1→3)-α - l - 甘露糖、(1→)-α - d - 葡萄糖、(1→4)-α - d - 葡萄糖、(1→6)-α - d - 葡萄糖和(1→6)-β - d - 半乳糖。刚果红试验表明MC - 2具有三螺旋构象。免疫刺激试验表明,MC - 2可诱导原代巨噬细胞向M1极化,并将M2巨噬细胞转化为M1表型。虽然MC - 2不能将M1巨噬细胞转变为M2,但它仍然可以抑制脂多糖诱导的炎症反应。此外,Toll样受体2、Toll样受体4、补体受体3和甘露糖受体被确认为巨噬细胞上MC - 2的膜受体。这些结果表明,MC - 2可能潜在地用于免疫低下和肿瘤治疗。