PLoS ONE · 2016 · 14 citations · 57 references
DysbiosisMicrobial PathogensInnate Immune SystemImmunologyImmune RegulationGut MicrobiotaInnate ImmunityTollip ExpressionImmune SystemInflammationToll-like ReceptorsTollip ProteinIntestinal MicrobiotaCell SignalingPost-transcriptional RegulationImmune FunctionMicrobiomeCell BiologyMucosal ImmunologyPathogenesisMicrobiologyGut BarrierMedicine
Immune responses against gut microbiota should be minimized to avoid unnecessary inflammation at mucosal surface. In this study, we analyzed the expression patterns of Toll-interacting protein (Tollip), an inhibitor of TLRs and IL-1 family cytokine-related intracellular signaling, in intestinal epithelial cells (IECs). Comparable mRNA expression was observed in murine small and large IECs (S-IECs and L-IECs). However, Tollip protein was only detected in L-IECs, but not in S-IECs. Similar results were obtained in germ-free mice, indicating that L-IEC-specific TOLLIP expression does not depend on bacterial colonization. Next, to understand the mechanisms underlying the post-transcriptional repression of Tollip, 3´-UTR-mediated translational regulation was evaluated. The region +1876/+2398 was responsible for the repression of Tollip expression. This region included the target sequence of miR-31. The inhibition of miR-31 restored the 3´-UTR-meditaed translational repression. In addition, miR-31 expression was significantly higher in S-IECs than in L-IECs, suggesting that miR-31 represses the translation of Tollip mRNA in S-IECs. Collectively, we conclude that the translation of Tollip is inhibited in S-IECs, at least in part, by miR-31 to yield L-IEC-specific high-level expression of the Tollip protein, which may contribute to the maintenance of intestinal homeostasis.
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A core gut microbiome in obese and lean twins
Peter J. Turnbaugh, Micah Hamady, Tanya Yatsunenko et al. · Nature · 2008 · 7.8K citations · Full text