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Biology subjects

Sidorenko, S. V.

Publications and source records attributed to Sidorenko, S. V..

2 recordsLinked to original sources

Alteration in the intracellular Na+/K+ ratio regulates gene expression through the shift of G-quadruplex dynamics in living cells

Alteration in the intracellular Na+i/K+i ratio can play an important regulatory role in many mammalian cells. Here, we demonstrated that the expression of some early response genes does depend on the intracellular Na+i/K+i ratio and that the inhibition of DNA-binding activity of transcription factors c-Fos and c-Jun attenuates the upregulation of Zfp36 and Egr1 genes in HeLa cells. Both replacement of intracellular Na+ and K+ by Li+ and the dissipation of Na+i/K+i gradient demonstrated a similar effect on the transcription of Fos, Jun, Zfp36, and Ptgs2. Oligonucleotide sequences from the Fos, Kit, and My[c] promoters with an ability to fold into G-quadruplexes (G4s) change their conformations differently depending on the ratio of Na+, K+, and Li+ ions in vitro. Fluorescence lifetime imaging microscopy studies using DNA G4-specific dye DAOTA-M2 revealed that changes in compositions and ratios of monovalent metal cations in HeLa cells were accompanied by alterations in intranuclear G4s dynamics. The data demonstrate that these structures may be considered as intracellular sensors of monovalent metal cations regulating gene expression through the shift of G4s dynamics.

biochemistry↗

Long-term impact of fecal transplantation in healthy volunteers

BackgroundFecal microbiota transplantation (FMT) is now approved for the treatment of refractory recurrent clostridial colitis, but a number of studies are ongoing in inflammatory bowel diseases, i.e., Crohns disease, nonspecific ulcerative colitis, and in other autoimmune conditions. In most cases, the effects of FMT are evaluated on patients with initially altered microbiota. The aim of the present study was to evaluate effects of FMT on the gut microbiota composition in healthy volunteers and to track long-term changes.\n\nResultsWe have performed a combined analysis of three healthy volunteers before and after FMT with frozen capsules, followed by evaluation of their general condition, adverse clinical effects, changes of basic laboratory parameters, and several immune markers. Intestinal microbiota samples were evaluated by 16S rRNA gene sequencing (16S seq) and shotgun sequencing (or whole-genome sequencing - WGS). The data analysis demonstrated the profound shift towards the donor microbiota taxonomic composition in all volunteers. Following FMT, all the volunteers exhibited gut colonization with donor gut bacteria, and persistence of this effect for almost ~1 year of observation. Transient changes of immune parameters were consistent with suppression of T-cell cytotoxicity. FMT was well tolerated with mild gastrointestinal adverse events and systemic inflammatory response in one volunteer.\n\nConclusionsThe FMT procedure leads to significant long-term changes of the gut microbiota in healthy volunteers with the shift towards donor microbiota composition, being relatively safe to the recipients without long-term adverse events.

microbiology↗