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由精氨酸代谢介导的种间相互作用增强了 对 的胁迫耐受性。 (你提供的原文中“against”后缺少具体内容,这可能会影响更准确完整的理解,但按要求先这样翻译了。)

Interspecies interactions mediated by arginine metabolism enhance the stress tolerance of against .

作者信息

Zhou Zhongkun, Yang Mengyue, Fang Hong, Niu Yuqing, Lu Juan, Ma Yunhao, Zhang Baizhuo, Zhu Hongmei, Chen Peng

机构信息

School of Pharmacy, Lanzhou University, Lanzhou, China.

出版信息

Microbiol Spectr. 2025 Mar 4;13(3):e0223524. doi: 10.1128/spectrum.02235-24. Epub 2025 Jan 27.

Abstract

Colorectal cancer (CRC) is a common cancer accompanied by microbiome dysbiosis. Exploration of probiotics against oncogenic microorganisms is promising for CRC treatment. Here, differential microorganisms between CRC and healthy control were analyzed. Antibacterial experiments, whole-genome sequencing, and metabolic network reconstruction were combined to reveal the anti- mechanism, which was verified by co-culture assay and mendelian randomization analysis. Sequencing results showed that was enriched in CRC, yet decreased gradually from healthy to CRC. Additionally, could be inhibited by . Whole-genome sequencing of showed high phylogenetic similarity with known probiotic strains and highlighted its functions for amino acid and carbohydrate metabolism. Metabolic network reconstruction demonstrated that cross-feeding and specific metabolites (acidic molecules, arginine) had a great influence on the coexistence relationship. Finally, the arginine supplement enhanced the competitive ability of against , and the mendelian randomization and metagenomic sequencing analysis confirmed the positive relationship among , arginine metabolism, and CRC. Thus, whole-genome sequencing and metabolic network reconstruction are valuable for probiotic mining and patient dietary guidance.IMPORTANCEUsing probiotics to inhibit oncogenic microorganisms () is promising for colorectal cancer (CRC) treatment. In this study, whole-genome sequencing and metabolic network reconstruction were combined to reveal the anti- mechanism of , which was verified by co-culture assay and mendelian randomization analysis. The result indicated that the arginine supplement enhanced the competitive ability of , which may be harmful to -infected CRC patients. is a potential probiotic to relieve this dilemma. Thus, using in silico simulation methods based on flux balance analysis, such as genome-scale metabolic reconstruction, provides valuable insights for probiotic mining and dietary guidance for cancer patients.

摘要

结直肠癌(CRC)是一种常见癌症,伴有微生物群落失调。探索针对致癌微生物的益生菌对CRC治疗具有前景。在此,分析了CRC与健康对照之间的差异微生物。结合抗菌实验、全基因组测序和代谢网络重建以揭示其抗菌机制,并通过共培养试验和孟德尔随机化分析进行了验证。测序结果显示,[具体微生物名称1]在CRC中富集,而[具体微生物名称2]从健康状态到CRC状态逐渐减少。此外,[具体微生物名称1]可被[具体微生物名称3]抑制。[具体微生物名称3]的全基因组测序显示与已知益生菌菌株具有高度系统发育相似性,并突出了其在氨基酸和碳水化合物代谢方面的功能。代谢网络重建表明交叉喂养和特定代谢产物(酸性分子、精氨酸)对共存关系有很大影响。最后,精氨酸补充增强了[具体微生物名称3]对[具体微生物名称1]的竞争能力,孟德尔随机化和宏基因组测序分析证实了[具体微生物名称3]、精氨酸代谢和CRC之间的正相关关系。因此,全基因组测序和代谢网络重建对于益生菌挖掘和患者饮食指导具有重要价值。重要性利用益生菌抑制致癌微生物([具体微生物名称1])对结直肠癌(CRC)治疗具有前景。在本研究中,结合全基因组测序和代谢网络重建以揭示[具体微生物名称3]的抗菌机制,并通过共培养试验和孟德尔随机化分析进行了验证。结果表明,精氨酸补充增强了[具体微生物名称3]的竞争能力,这可能对感染[具体微生物名称1]的CRC患者有害。[具体微生物名称3]是缓解这一困境的潜在益生菌。因此,使用基于通量平衡分析的计算机模拟方法,如基因组规模代谢重建,为益生菌挖掘和癌症患者饮食指导提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d364/11878013/2f25a39317b3/spectrum.02235-24.f001.jpg

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