Results 211 to 220 of about 1,265,065 (269)
Enzyme-DNA Interactions Affect the Catalytic Inhibition of Mycobacterial Gyrases by Antibacterial Drugs. [PDF]
Armenia JF, Osheroff N.
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DNA deformability in sequence-dependent capture of E. coli gyrase. [PDF]
Baker ML +9 more
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Proteomic Analysis of Human Topoisomerases Reveals Their Distinct and Diverse Cellular Functions. [PDF]
Zhang H, Xiong Y, Chen Z, Chen J.
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Genomic and Phenotypic Characterization of <i>Streptomyces marxii</i> sp. nov., Producer of Kinanthraquinone B. [PDF]
Dobryakov MY, Buyuklyan JA, Biryukov MV.
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Topological Regulation of the Mammalian Genome by Positive DNA Supercoiling
Singh AK +4 more
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Origin and evolution of DNA topoisomerases
The DNA topoisomerases are essential for DNA replication, transcription, recombination, as well as for chromosome compaction and segregation. They may have appeared early during the formation of the modern DNA world. Several families and subfamilies of the two types of DNA topoisomerases (I and II) have been described in the three cellular domains of ...
Patrick Forterre +2 more
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DNA topoisomerases constitute a large family of enzymes that are essential for all domains of life. Although they share general reaction chemistry and the capacity to govern DNA topology and resolve strand entanglements during fundamental molecular processes, they are characterized by differences in their structural organization, modes of enzymatic ...
CAPRANICO, GIOVANNI +2 more
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EcoSal Plus, 2009
DNA topoisomerases are enzymes that control the topological state of DNA in all cells; they have central roles in DNA replication and transcription. They are classified into two types, I and II, depending on whether they catalyze reactions involving the breakage of one or both strands of DNA.
Katherine, Evans-Roberts +1 more
openaire +3 more sources
DNA topoisomerases are enzymes that control the topological state of DNA in all cells; they have central roles in DNA replication and transcription. They are classified into two types, I and II, depending on whether they catalyze reactions involving the breakage of one or both strands of DNA.
Katherine, Evans-Roberts +1 more
openaire +3 more sources

