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Zhivkoplias, E.

Publications and source records attributed to Zhivkoplias, E..

2 recordsLinked to original sources

GeneSNAKE: a Python package for benchmarking and simulation of gene regulatory networks and perturbation-induced expression data

Understanding how genes interact with and regulate each other is a key challenge in systems biology. One of the primary methods to study this is through gene regulatory networks (GRNs). The field of GRN inference however faces many challenges, which necessitates effective tools for evaluating inference methods. For this purpose, data that corresponds to a known GRN, from various conditions and experimental setups is necessary, which is only possible to attain via simulation. Today, most existing tools for GRN-based simulation are limited either in network or data properties, with few or no options to modify these properties. To address these limitations we present GeneSNAKE, a Python package designed to allow users to generate biologically realistic GRNs, and expression data for benchmarking purposes. GeneSNAKE allows the user to control a wide range of network and data properties, including several distinct noise models. GeneSNAKE improves on previous work in the field by adding a perturbation model and a wide range of perturbation schemes along with the ability to control the noise and the perturbation strength. For benchmarking, GeneSNAKE offers a number of functions both for comparing network similarity, and properties in data and GRNs. These functions can further be used to study properties of biological data to produce simulated data with more realistic properties. GeneSNAKE is an open-source, comprehensive simulation and benchmarking package with powerful capabilities that are not combined in any other single package, and thanks to the Python implementation it can be extended and modified by users.

bioinformatics↗

The Dynamics of Synthesis and Localization of Jumbo Phage RNA Polymerases inside Infected Cells

A nucleus-like structure composed of phage-encoded proteins and containing replicating viral DNA is formed in Pseudomonas aeruginosa cells infected by jumbo bacteriophage phiKZ. The PhiKZ genes are transcribed independently from host RNA polymerase (RNAP) by two RNAPs encoded by the phage. The virion RNAP (vRNAP) transcribes early viral genes and must be injected into the cell with phage DNA. The non-virion RNAP (nvRNAP) is composed of early genes products and transcribes late viral genes. In this work, the dynamics of phage RNAPs localization during phage phiKZ infection was studied. We provide direct evidence of PhiKZ vRNAP injection in infected cells and show that it is excluded from the phage nucleus. The nvRNAP is synthesized shortly after the onset of infection and localizes in the nucleus. We propose that spatial separation of two phage RNAPs allows coordinated expression of phage genes belonging to different temporal classes.

molecular biology↗