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Kegel, N. B.

Publications and source records attributed to Kegel, N. B..

2 recordsLinked to original sources

Proteins are a source of glycans found in preparations of glycoRNA

Recent discoveries show that RNA can be modified with sialylated glycans (termed glycoRNA), thus broadening our understanding of cellular glycosylation beyond traditional proteins and lipids. However, the pathway of RNA-glycosylation and its biological function remain elusive. Following the original glycoRNA isolation protocol, we also detect labelled glycans in small RNA preparations. However, glycosylated molecules showed resistance to treatment with RNase A/T1 but were sensitive to proteinase K digestion under denaturing conditions. Using liquid chromatography-mass spectrometry (LC-MS) based proteomics, we detect various proteins that co-purify with small but not large RNA preparations isolated from human or murine cells, including the glycosylated membrane protein LAMP1. Importantly, we further demonstrate that recombinant soluble LAMP1 can be purified following the glycoRNA isolation method. These findings suggest that glycoproteins co-purify with RNA using current glycoRNA purification protocols, thus representing a considerable source of glycans in samples of glycoRNA.

molecular biology↗

Decomposition of L-glutamine and accumulation of ammonium in cell culture media inhibit infectivity of influenza viruses

Cationic lysosomotropic molecules such as ammonium salts and chloroquine inhibit influenza A virus (IAV) infection in cell culture by counteracting endosomal acidification and hampering viral-endosomal fusion. Here, we studied the effects of storage of L-glutamine-supplemented cell culture media on accumulation of ammonium and inhibition of IAV infection. The storage-related inhibitory effect was observed in the case of DMEM and OptiMEM media, but not RPMI medium, and was more pronounced for the IAV with pH-stable hemagglutinin. Our results highlight the importance to consider potential presence of virus-inhibiting lysosomotropic agents and/or their production in culture media with negative effect on influenza virus infection.

microbiology↗