Suppr超能文献

来自人类肠道的菌株BI87:强大的抗癌活性及与已知谱系的差异。

sp. BI87 from human gut: potent anticancer activities and divergence from known lineages.

作者信息

Wang Yu-Hui, Xu Hong-Tao, Liu Miao-Wei, Yuan Bao-Juan, Gao Xin-Yu, Zhang Xing-Hua, Tian Hong-Da, Yu Hao, Lai Jin-Ru, Liu Liang, Johnston Randal N, Liu Gui-Rong, Liu Shu-Lin

机构信息

Genomics Research Center (Key Laboratory of Gut Microbiota and Pharmacogenomics of Heilongjiang Province, State-Province Key Laboratory of Biomedicine-Pharmaceutics of China), College of Pharmacy, Harbin Medical University, Harbin, China.

Harbin Medical University-University of Calgary Cumming School of Medicine Center for Infection and Genomics, Harbin Medical University, Harbin, China.

出版信息

Microbiol Spectr. 2025 Aug 13:e0085825. doi: 10.1128/spectrum.00858-25.

Abstract

Cancer is among the deadliest diseases with few truly curative therapies. Recent studies have shown that the human intestinal microbiota contains bacteria that exhibit potent suppressive effects on cancer or coordinate anticancer functions with the immune system. However, whether the peculiar anticancer trait was acquired stochastically by a strain of a non-anticancer bacterial species or an intrinsic property of a phylogenetic lineage of bacteria remained unclear. In this study, we compared a human gut isolate sp. BI87, which had highly effective anticancer activities, with the type strain of , DSM 40455, which was most closely related to BI87 among 30 type strains of the genus but did not show any detectable anticancer activities. We found that, although BI87 and DSM 40455 had >99% 16S rDNA sequence similarity, they are phylogenetically separated by a genetic boundary into distinct natural species as evaluated by the 3Cs definition of bacterial species based on the ratio of common genes with zero sequence degeneracy. In addition to the anticancer activities, BI87 encodes several biological characteristics different from DSM 40455, including those of antibacterial and antiviral spectra, secondary metabolites, structural composition in the cell wall, and major cellular fatty acids. Based on the genomic and phenotypic distinctions of BI87 from closely related strains, we propose that the anticancer bacterial strain BI87 represents a new lineage at the natural species level within the genus .IMPORTANCEThe characterization of the anticancer bacterial strain, . BI87, isolated from a healthy human, suggests the prevalent existence of anticancer microbes in the gut microbiome of humans, which may be nurtured and harnessed for cancer prevention or treatment without the need for the introduction of engineered and non-indigenous microbes to a person or the use of radio- or chemo-therapies. Also important is the finding that a close relative of BI87, DSM40455, does not express appreciable anticancer properties in the same and experiments, demonstrating that sp. BI87 represents a novel bacterial lineage with selective suppressive activities on cancer, at the phylogenetic level of natural species. Genomic comparisons between BI87 and DSM40455 demonstrate that phylogenetic delineation of closely related bacteria needs to be conducted at the level of natural species rather than OTUs, as an OTU may contain phenotypically or even phylogenetically radically distinct bacteria.

摘要

癌症是最致命的疾病之一,真正具有治愈性的疗法寥寥无几。最近的研究表明,人类肠道微生物群中含有一些细菌,它们对癌症具有强大的抑制作用,或者能与免疫系统协同发挥抗癌功能。然而,这种独特的抗癌特性是由一种非抗癌细菌菌株随机获得的,还是细菌系统发育谱系的固有特性,仍不清楚。在本研究中,我们将具有高效抗癌活性的人类肠道分离株sp. BI87与DSM 40455(在该属的30个模式菌株中与BI87亲缘关系最近,但未表现出任何可检测到的抗癌活性)的模式菌株进行了比较。我们发现,尽管BI87和DSM 40455的16S rDNA序列相似度>99%,但根据基于零序列简并的共同基因比例的细菌物种3Cs定义评估,它们在系统发育上被一个遗传边界分隔为不同的自然物种。除了抗癌活性外,BI87还编码了一些与DSM 40455不同的生物学特征,包括抗菌和抗病毒谱、次级代谢产物、细胞壁结构组成以及主要细胞脂肪酸。基于BI87与密切相关的菌株在基因组和表型上的差异,我们提出抗癌细菌菌株BI87代表了该属内自然物种水平的一个新谱系。重要性从健康人类分离出的抗癌细菌菌株sp. BI87的特征表明,抗癌微生物普遍存在于人类肠道微生物群中,无需向人体引入工程化和非本土微生物,也无需使用放疗或化疗,就可以培育和利用这些微生物来预防或治疗癌症。同样重要的是,在相同的和实验中,BI87的近亲DSM40455未表现出明显的抗癌特性,这表明sp. BI87在自然物种的系统发育水平上代表了一种对癌症具有选择性抑制活性的新型细菌谱系。BI87和DSM40455之间的基因组比较表明,密切相关细菌的系统发育划分需要在自然物种水平而非操作分类单元(OTU)水平上进行,因为一个OTU可能包含表型甚至系统发育上截然不同的细菌。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验