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Alexeev, D.

Publications and source records attributed to Alexeev, D..

2 recordsLinked to original sources

Knomics-Biota - a system for exploratory analysis of human gut microbiota data

SummaryMetagenomic surveys of human microbiota are becoming increasingly widespread in academic research as well as in food and pharmaceutical industries and clinical context. Intuitive tools for exploration of experimental data are of high interest to researchers. Knomics-Biota is a Web-based resource for exploratory analysis of human gut metagenomes. Users can generate analytical reports that correspond to common experimental schemes (like case-control study or paired comparison). Statistical analysis and visualizations of microbiota composition are provided in association with the external factors and in the context of thousands of publicly available datasets.\n\nAvailability and ImplementationThe Web-service is available at https://biota.knomics.ru.\n\nContactanna.popenko@knomics.ru or a.tyakht@gmail.com.\n\nSupplementary informationSupplementary figures are available at Bioinformatics online.

bioinformatics

Dissection of purified LINE-1 reveals distinct nuclear and cytoplasmic intermediates

1.Long Interspersed Nuclear Element-1 (LINE-1, L1) is a mobile genetic element active in human genomes. L1-encoded ORF1 and ORF2 proteins bind L1 RNAs, forming ribonucleoproteins (RNPs). These RNPs interact with diverse host proteins, some repressive and others required for the L1 lifecycle. Using differential affinity purifications and quantitative mass spectrometry, we have characterized the proteins associated with distinctive L1 macromolecular complexes. Our findings support the presence of multiple L1-derived retrotransposition intermediates in vivo. Among them, we describe a cytoplasmic intermediate that we hypothesize to be the canonical ORF1p/ORF2p/L1-RNA-containing RNP, and we describe a nuclear population containing ORF2p, but lacking ORF1p, which likely contains host factors participating in template-primed reverse transcription.

molecular biology