Wang Han, Sun Tianyu, Song Wenshuai, Guo Xiaowei, Cao Peng, Xu Xi, Shen Yue, Zhao Junwei
Key Laboratory of Agricultural Microbiology of Heilongjiang Province, Northeast Agricultural University, No. 600 Changjiang Road, Xiangfang District, Harbin 150030, China.
College of Science, Northeast Agricultural University, No. 600 Changjiang Road, Xiangfang District, Harbin 150030, China.
Microorganisms. 2020 Mar 20;8(3):441. doi: 10.3390/microorganisms8030441.
Cancer is a serious threat to human health. With the increasing resistance to known drugs, it is still urgent to find new drugs or pro-drugs with anti-tumor effects. Natural products produced by microorganisms have played an important role in the history of drug discovery, particularly in the anticancer and anti-infective areas. The plant rhizosphere ecosystem is a rich resource for the discovery of actinomycetes with potential applications in pharmaceutical science, especially . We screened -like strains from the rhizosphere soil of wheat ( L.) in Hebei province, China, and thirty-nine strains were obtained. Among them, the extracts of 14 isolates inhibited the growth of colon tumor cell line HCT-116. Strain NEAU-wh-3-1 exhibited better inhibitory activity, and its active ingredients were further studied. Then, 16S rRNA gene sequence similarity studies showed that strain NEAU-wh3-1 with high sequence similarities to DSM 41855 (99.65%), MB891-A1 (99.45%), and 5H-CA11 (98.62%). Moreover, multilocus sequence analysis based on the five other house-keeping genes (D, B, B, A, and B) and polyphasic taxonomic approach comprising chemotaxonomic, phylogenetic, morphological, and physiological characterization indicated that the isolate should be assigned to the genus and was different from its closely related strains, therefore, it is proposed that strain NEAU-wh3-1 may be classified as representatives of a novel species of the genus . Furthermore, active substances in the fermentation broth of strain NEAU-wh-3-1 were isolated by bioassay-guided analysis and identified by nuclear magnetic resonance (NMR) and mass spectrometry (MS) analyses. Consequently, one new Zincophorin analogue together with seven known compounds was detected. The new compound showed highest antitumor activity against three human cell lines with the 50% inhibition (IC) values of 8.8-11.6 μg/mL and good antibacterial activity against four pathogenic bacteria, the other known compounds also exhibit certain biological activity.
癌症是对人类健康的严重威胁。随着对已知药物耐药性的增加,寻找具有抗肿瘤作用的新药物或前体药物仍然迫在眉睫。微生物产生的天然产物在药物发现史上发挥了重要作用,特别是在抗癌和抗感染领域。植物根际生态系统是发现放线菌的丰富资源,这些放线菌在药学领域具有潜在应用,尤其是。我们从中国河北省小麦(L.)的根际土壤中筛选出类菌株,共获得39株。其中,14株分离物的提取物抑制结肠肿瘤细胞系HCT-116的生长。菌株NEAU-wh-3-1表现出更好的抑制活性,并对其活性成分进行了进一步研究。然后,16S rRNA基因序列相似性研究表明,菌株NEAU-wh3-1与DSM 41855(99.65%)、MB891-A1(99.45%)和5H-CA11(98.62%)具有高度序列相似性。此外,基于其他五个管家基因(D、B、B、A和B)的多位点序列分析以及包括化学分类、系统发育、形态和生理特征的多相分类方法表明,该分离物应归入属,且与其密切相关的菌株不同,因此,建议将菌株NEAU-wh3-1归类为该属新物种的代表。此外,通过生物测定指导分析分离出菌株NEAU-wh-3-1发酵液中的活性物质,并通过核磁共振(NMR)和质谱(MS)分析进行鉴定。结果,检测到一种新的锌ophorin类似物以及七种已知化合物。该新化合物对三种人类细胞系表现出最高的抗肿瘤活性,50%抑制(IC)值为8.8-11.6μg/mL,对四种病原菌具有良好的抗菌活性,其他已知化合物也表现出一定的生物活性。