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zadetkov: 89
1.
  • A model for the evolution o... A model for the evolution of prokaryotic DNA restriction-modification systems based upon the structural malleability of Type I restriction-modification enzymes
    Bower, Edward K M; Cooper, Laurie P; Roberts, Gareth A ... Nucleic acids research, 09/2018, Letnik: 46, Številka: 17
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    Abstract Restriction Modification (RM) systems prevent the invasion of foreign genetic material into bacterial cells by restriction and protect the host's genetic material by methylation. They are ...
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2.
  • Impact of target site distr... Impact of target site distribution for Type I restriction enzymes on the evolution of methicillin-resistant Staphylococcus aureus (MRSA) populations
    Roberts, Gareth A; Houston, Patrick J; White, John H ... Nucleic acids research, 08/2013, Letnik: 41, Številka: 15
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    A limited number of Methicillin-resistant Staphylococcus aureus (MRSA) clones are responsible for MRSA infections worldwide, and those of different lineages carry unique Type I ...
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3.
  • Quantification of photosensitized singlet oxygen production by a fluorescent protein
    Ragàs, Xavier; Cooper, Laurie P; White, John H ... Chemphyschem, January 17, 2011, Letnik: 12, Številka: 1
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    Fluorescent proteins are increasingly becoming actuators in a range of cell biology techniques. One of those techniques is chromophore-assisted laser inactivation (CALI), which is employed to ...
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4.
  • DNA target recognition doma... DNA target recognition domains in the Type I restriction and modification systems of Staphylococcus aureus
    Cooper, Laurie P; Roberts, Gareth A; White, John H ... Nucleic acids research, 04/2017, Letnik: 45, Številka: 6
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    Staphylococcus aureus displays a clonal population structure in which horizontal gene transfer between different lineages is extremely rare. This is due, in part, to the presence of a Type I DNA ...
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5.
  • Extensive DNA mimicry by th... Extensive DNA mimicry by the ArdA anti-restriction protein and its role in the spread of antibiotic resistance
    McMahon, Stephen A; Roberts, Gareth A; Johnson, Kenneth A ... Nucleic acids research, 08/2009, Letnik: 37, Številka: 15
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    The ardA gene, found in many prokaryotes including important pathogenic species, allows associated mobile genetic elements to evade the ubiquitous Type I DNA restriction systems and thereby assist ...
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6.
  • The evolutionary pathway fr... The evolutionary pathway from a biologically inactive polypeptide sequence to a folded, active structural mimic of DNA
    Kanwar, Nisha; Roberts, Gareth A; Cooper, Laurie P ... Nucleic acids research, 05/2016, Letnik: 44, Številka: 9
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    The protein Ocr (overcome classical restriction) from bacteriophage T7 acts as a mimic of DNA and inhibits all Type I restriction/modification (RM) enzymes. Ocr is a homodimer of 116 amino acids and ...
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7.
  • ArdA proteins from differen... ArdA proteins from different mobile genetic elements can bind to the EcoKI Type I DNA methyltransferase of E. coli K12
    Chen, Kai; Reuter, Marcel; Sanghvi, Bansi ... Biochimica et biophysica acta, 03/2014, Letnik: 1844, Številka: 3
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    Anti-restriction and anti-modification (anti-RM) is the ability to prevent cleavage by DNA restriction–modification (RM) systems of foreign DNA entering a new bacterial host. The evolutionary ...
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8.
  • Exploring the DNA mimicry o... Exploring the DNA mimicry of the Ocr protein of phage T7
    Roberts, Gareth A; Stephanou, Augoustinos S; Kanwar, Nisha ... Nucleic acids research, 09/2012, Letnik: 40, Številka: 16
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    DNA mimic proteins have evolved to control DNA-binding proteins by competing with the target DNA for binding to the protein. The Ocr protein of bacteriophage T7 is the most studied DNA mimic and ...
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9.
  • Structure and operation of ... Structure and operation of the DNA-translocating type I DNA restriction enzymes
    Kennaway, Christopher K; Taylor, James E N; Song, Chun Feng ... Genes & development, 01/2012, Letnik: 26, Številka: 1
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    Type I DNA restriction/modification (RM) enzymes are molecular machines found in the majority of bacterial species. Their early discovery paved the way for the development of genetic engineering. ...
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10.
  • The structure of M.EcoKI Ty... The structure of M.EcoKI Type I DNA methyltransferase with a DNA mimic antirestriction protein
    Kennaway, Christopher K.; Obarska-Kosinska, Agnieszka; White, John H. ... Nucleic acids research, 02/2009, Letnik: 37, Številka: 3
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    Type-I DNA restriction–modification (R/M) systems are important agents in limiting the transmission of mobile genetic elements responsible for spreading bacterial resistance to antibiotics. EcoKI, a ...
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zadetkov: 89

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