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Biology subjects

Twells, N. M.

Publications and source records attributed to Twells, N. M..

2 recordsLinked to original sources

Screening the human miRNA interactome reveals coordinated upregulation in melanoma, adding bidirectional regulation to miRNA networks.

Cellular protein expression is coordinated post-transcriptionally by an intricate regulatory network. The current presumption is that miRNA work by repression of functionally related targets within a system. In recent work, upregulation of protein expression via direct interactions of mRNA with miRNA has been found in dividing cells, providing an additional mechanism of regulation. Herein, we demonstrate coordinated upregulation of functionally-coupled proteins by miRNA. We focused on CD98hc, the heavy chain of the amino acid transporter LAT1, and -2,3-sialyltransferases ST3GAL1 and ST3GAL2, which are critical for CD98hc stability in melanoma. Profiling miRNA regulation using our high-throughput miRFluR assay, we identified miRNA that upregulated expression of both CD98hc and either ST3GAL1 or ST3GAL2. These co-upregulating miRNAs were enriched in melanoma datasets associated with transformation and progression. Our findings add co-upregulation by miRNA into miRNA regulatory networks and adds a new bidirectional twist to the impact miRNA have on protein regulation and glycosylation.

cell biology↗

Reduced inflammatory response and promoted multiciliated cell differentiation in mice protected by defective interfering influenza virus

Influenza defective interfering (DI) viruses have long been considered promising antiviral candidates because of their ability to interfere with replication-competent viruses and to induce antiviral immunity. However, the mechanisms underlying DI-mediated antiviral immunity have not been extensively explored. Here, we demonstrated interferon (IFN) independent protection conferred by influenza DI virus against homologous virus infection in mice deficient in type I and III IFN signaling. By integrating transcriptional and post-transcriptional regulatory data we identified unique host signatures in response to DI co-infection. DI-treated mice exhibited reduced viral transcription, less intense inflammatory and innate immune responses, and primed multiciliated cell differentiation in their lungs at an early stage of infection, even in the absence of type I or III IFNs. Overall, our study provides mechanistic insight into the protection mediated by DIs, implying a unifying theme involving inflammation and multiciliogenesis in maintaining respiratory homeostasis, and reveals their IFN-independent antiviral activity.

microbiology↗