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zadetkov: 12
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  • Compaction and control—the ... Compaction and control—the role of chromosome-organizing proteins in Streptomyces
    Szafran, Marcin J; Jakimowicz, Dagmara; Elliot, Marie A FEMS microbiology reviews, 11/2020, Letnik: 44, Številka: 6
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    ABSTRACT Chromosomes are dynamic entities, whose organization and structure depend on the concerted activity of DNA-binding proteins and DNA-processing enzymes. In bacteria, chromosome replication, ...
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  • The activity of CobB1 prote... The activity of CobB1 protein deacetylase contributes to nucleoid compaction in Streptomyces venezuelae spores by increasing HupS affinity for DNA
    Duława-Kobeluszczyk, Julia; Strzałka, Agnieszka; Tracz, Michał ... Nucleic acids research, 07/2024, Letnik: 52, Številka: 12
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    Streptomyces are soil bacteria with complex life cycle. During sporulation Streptomyces linear chromosomes become highly compacted so that the genetic material fits within limited spore volume. The ...
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  • C-terminal lysine repeats i... C-terminal lysine repeats in Streptomyces topoisomerase I stabilize the enzyme-DNA complex and confer high enzyme processivity
    Strzalka, Agnieszka; Szafran, Marcin J; Strick, Terence ... Nucleic acids research, 11/2017, Letnik: 45, Številka: 20
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    Streptomyces topoisomerase I (TopA) exhibits exceptionally high processivity. The enzyme, as other actinobacterial topoisomerases I, differs from its bacterial homologs in its C-terminal domain ...
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  • Spatial rearrangement of th... Spatial rearrangement of the Streptomyces venezuelae linear chromosome during sporogenic development
    Szafran, Marcin J.; Małecki, Tomasz; Strzałka, Agnieszka ... Nature communications, 09/2021, Letnik: 12, Številka: 1
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    Abstract Bacteria of the genus Streptomyces have a linear chromosome, with a core region and two ‘arms’. During their complex life cycle, these bacteria develop multi-genomic hyphae that ...
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  • A highly processive actinob... A highly processive actinobacterial topoisomerase I - thoughts on Streptomyces ' demand for an enzyme with a unique C-terminal domain
    Szafran, Marcin J; Strzałka, Agnieszka; Jakimowicz, Dagmara Microbiology (Society for General Microbiology), 02/2020, Letnik: 166, Številka: 2
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    Topoisomerase I (TopA) is an essential enzyme that is required to remove excess negative supercoils from chromosomal DNA. Actinobacteria encode unusual TopA homologues with a unique C-terminal domain ...
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  • Enhanced binding of an HU h... Enhanced binding of an HU homologue under increased DNA supercoiling preserves chromosome organisation and sustains Streptomyces hyphal growth
    Strzałka, Agnieszka; Kois-Ostrowska, Agnieszka; Kędra, Magda ... Nucleic acids research, 11/2022, Letnik: 50, Številka: 21
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    Bacterial chromosome topology is controlled by topoisomerases and nucleoid-associated proteins (NAPs). While topoisomerases regulate DNA supercoiling, NAPs introduce bends or coat DNA upon its ...
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  • Amsacrine Derivatives Selec... Amsacrine Derivatives Selectively Inhibit Mycobacterial Topoisomerase I (TopA), Impair M. smegmatis Growth and Disturb Chromosome Replication
    Szafran, Marcin J; Kołodziej, Marta; Skut, Patrycja ... Frontiers in microbiology, 07/2018, Letnik: 9
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    Amsacrine, which inhibits eukaryotic type II topoisomerase via DNA intercalation and stabilization of the cleavable topoisomerase-DNA complex, promotes DNA damage and eventually cell death. Amsacrine ...
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  • Global Chromosome Topology ... Global Chromosome Topology and the Two-Component Systems in Concerted Manner Regulate Transcription in Streptomyces
    Gongerowska-Jac, Martyna; Szafran, Marcin J; Mikołajczyk, Jakub ... mSystems, 2021-Dec-21, Letnik: 6, Številka: 6
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    Bacterial gene expression is controlled at multiple levels, with chromosome supercoiling being one of the most global regulators. Global DNA supercoiling is maintained by the orchestrated action of ...
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