Growth rate alterations of human colorectal cancer cells by 157 gut bacteria

Publication date

2020-11-09

Authors

Taddese, Rahwa
Garza, Daniel R
Ruiter, Lilian N
de Jonge, Marien I
Belzer, Clara
Aalvink, Steven
Nagtegaal, Iris D
Dutilh, BasISNI 0000000389464735
Boleij, Annemarie

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Document Type

Article
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Abstract

Several bacteria in the human gut microbiome have been associated with colorectal cancer (CRC) by high-throughput screens. In some cases, molecular mechanisms have been elucidated that drive tumorigenesis, including bacterial membrane proteins or secreted molecules that interact with the human cancer cells. For most gut bacteria, however, it remains unknown if they enhance or inhibit cancer cell growth. Here, we screened bacteria-free supernatants (secretomes) and inactivated cells of over 150 cultured bacterial strains for their effects on cell growth. We observed family-level and strain-level effects that often differed between bacterial cells and secretomes, suggesting that different molecular mechanisms are at play. Secretomes of Bacteroidaceae, Enterobacteriaceae, and Erysipelotrichaceae bacteria enhanced cell growth, while most Fusobacteriaceae cells and secretomes inhibited growth, contrasting prior findings. In some bacteria, the presence of specific functional genes was associated with cell growth rates, including the virulence genes TcdA, TcdB in Clostridiales and FadA in Fusobacteriaceae, which both inhibited growth. Bacteroidaceae cells that enhanced growth were enriched for genes of the cobalamin synthesis pathway, while Fusobacteriaceae cells that inhibit growth were enriched for genes of the ethanolamine utilization pathway. Together, our results reveal how different gut bacteria have wide-ranging effects on cell growth, contribute a better understanding of the effects of the gut microbiome on host cells, and provide a valuable resource for identifying candidate target genes for potential microbiome-based diagnostics and treatment strategies.

Keywords

Colorectal cancer, cell proliferation, MTT assay, human microbiome, secretomes, SDG 3 - Good Health and Well-being

Citation

Taddese, R, Garza, D R, Ruiter, L N, de Jonge, M I, Belzer, C, Aalvink, S, Nagtegaal, I D, Dutilh, B E & Boleij, A 2020, 'Growth rate alterations of human colorectal cancer cells by 157 gut bacteria', Beneficial microbes, vol. 12, no. 1, pp. 1-20. https://doi.org/10.1080/19490976.2020.1799733