Differential effects of commensal bacteria on progenitor cell adhesion, division symmetry and tumorigenesis in the Drosophila intestine
Author(s) -
Meghan Ferguson,
Kristina Petkau,
MinJeong Shin,
Anthony Galenza,
David E. Fast,
Edan Foley
Publication year - 2021
Publication title -
development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.754
H-Index - 325
eISSN - 1477-9129
pISSN - 0950-1991
DOI - 10.1242/dev.186106
Subject(s) - biology , carcinogenesis , microbiology and biotechnology , drosophila (subgenus) , bacteria , progenitor , progenitor cell , cell division , commensalism , adhesion , cell adhesion , cell , genetics , stem cell , cancer , gene , chemistry , organic chemistry
Microbial factors influence homeostatic and oncogenic growth in the intestinal epithelium. However, we know little about immediate effects of commensal bacteria on stem cell division programs. In this study, we examined the effects of commensal Lactobacillus species on homeostatic and tumorigenic stem cell proliferation in the female Drosophila intestine. We identified Lactobacillus brevis as a potent stimulator of stem cell divisions. In a wild-type midgut, L. brevis activates growth regulatory pathways that drive stem cell divisions. In a Notch-deficient background, L. brevis -mediated proliferation causes rapid expansion of mutant progenitors, leading to accumulation of large, multi-layered tumors throughout the midgut. Mechanistically, we showed tha L. brevis disrupts expression and subcellular distribution of progenitor cell integrins, supporting symmetric divisions that expand intestinal stem cell populations. Collectively, our data emphasize the impact of commensal microbes on division and maintenance of the intestinal progenitor compartment.
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