黑色素瘤
生物
免疫
微生物学
色氨酸
拟杆菌
犬尿氨酸
色氨酸酶
拟杆菌科
脆弱类杆菌
CD8型
生物信息学
免疫系统
免疫学
吲哚胺2,3-双加氧酶
渗透(HVAC)
犬尿氨酸途径
突变体
白细胞介素6
细胞
癌症研究
化学
炎症
先天免疫系统
微生物群
脂多糖
酶
柠檬酸杆菌
拉顿
免疫疗法
作者
Ximena Diaz Olea,Kristin Beede,Gabriel Pereira,David Scott,Christopher Petucci,Eric Martens,Dmitri Rodionov,Aagam Shah,Miguel P. Martinez,Hyungsoo Kim,Ashok Kumar Sharma,Anthony Martin,Tongwu Zhang,Mark B. Faries,Omid Hamid,Suzanne Devkota,Andrei Osterman,Simon Knott,Emile E. Voest,Nadim J. Ajami
标识
DOI:10.1016/j.xcrm.2026.102921
摘要
Study of gut microbiota control of anti-tumor immunity (ATI) identifies Bacteroides rodentium and the human-related Bacteroides uniformis species to be capable of inducing ATI and limiting melanoma development in germ-free (GF), complex microbiome, or wild-type (WT) mice. Enhanced CD8 + T cell infiltration within tumors of mice harboring B. rodentium coincides with increased expression of immune-stimulating pathways. Metabolomic analyses identify lower tryptophan levels in the cecal samples of GF mice harboring B. rodentium . In silico genomic reconstruction reveals that B. rodentium and B. uniformis harbor tryptophanase A ( TnaA ) and aromatic aminotransferase genes, which degrade tryptophan to indoles. Administration of B. uniformis harboring TnaA mutant fails to inhibit melanoma growth. Notably, administration of indoles effectively induces ATI and inhibits melanoma development. Correspondingly, the levels of bacterially encoded tryptophan-degrading enzymes are higher in cohorts of patients with melanoma responding to immunotherapy. These findings identify indoles as tryptophan breakdown products capable of inducing ATI resulting in melanoma inhibition.
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