Search Results - "Perera, Rajika L"

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  1. 1

    A structural and dynamic model for the assembly of Replication Protein A on single-stranded DNA by Yates, Luke A., Aramayo, Ricardo J., Pokhrel, Nilisha, Caldwell, Colleen C., Kaplan, Joshua A., Perera, Rajika L., Spies, Maria, Antony, Edwin, Zhang, Xiaodong

    Published in Nature communications (21-12-2018)
    “…Replication Protein A (RPA), the major eukaryotic single stranded DNA-binding protein, binds to exposed ssDNA to protect it from nucleases, participates in a…”
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    Journal Article
  2. 2

    Structures of human primase reveal design of nucleotide elongation site and mode of Pol α tethering by Kilkenny, Mairi Louise, Longo, Michael Anthony, Perera, Rajika L., Pellegrini, Luca

    “…Initiation of DNA synthesis in genomic duplication depends on primase, the DNA-dependent RNA polymerase that synthesizes de novo the oligonucleotides that…”
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    Journal Article
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    A comprehensive search of functional sequence space using large mammalian display libraries created by gene editing by Parthiban, Kothai, Perera, Rajika L, Sattar, Maheen, Huang, Yanchao, Mayle, Sophie, Masters, Edward, Griffiths, Daniel, Surade, Sachin, Leah, Rachael, Dyson, Michael R, McCafferty, John

    Published in mAbs (04-07-2019)
    “…The construction of large libraries in mammalian cells allows the direct screening of millions of molecular variants for binding properties in a cell type…”
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    Journal Article
  6. 6

    Mechanism for priming DNA synthesis by yeast DNA polymerase α by Perera, Rajika L, Torella, Rubben, Klinge, Sebastian, Kilkenny, Mairi L, Maman, Joseph D, Pellegrini, Luca

    Published in eLife (02-04-2013)
    “…The DNA Polymerase α (Pol α)/primase complex initiates DNA synthesis in eukaryotic replication. In the complex, Pol α and primase cooperate in the production…”
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    Journal Article
  7. 7

    Shared active site architecture between the large subunit of eukaryotic primase and DNA photolyase by Sauguet, Ludovic, Klinge, Sebastian, Perera, Rajika L, Maman, Joseph D, Pellegrini, Luca

    Published in PloS one (09-04-2010)
    “…DNA synthesis during replication relies on RNA primers synthesised by the primase, a specialised DNA-dependent RNA polymerase that can initiate nucleic acid…”
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    Journal Article
  8. 8

    Production of soluble mammalian proteins in Escherichia coli: identification of protein features that correlate with successful expression by Dyson, Michael R, Shadbolt, S Paul, Vincent, Karen J, Perera, Rajika L, McCafferty, John

    Published in BMC biotechnology (14-12-2004)
    “…In the search for generic expression strategies for mammalian protein families several bacterial expression vectors were examined for their ability to promote…”
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    Journal Article
  9. 9

    A Ctf4 trimer couples the CMG helicase to DNA polymerase α in the eukaryotic replisome by Simon, Aline C., Zhou, Jin C., Perera, Rajika L., van Deursen, Frederick, Evrin, Cecile, Ivanova, Marina E., Kilkenny, Mairi L., Renault, Ludovic, Kjaer, Svend, Matak-Vinković, Dijana, Labib, Karim, Costa, Alessandro, Pellegrini, Luca

    Published in Nature (London) (12-06-2014)
    “…This study shows how the yeast Ctf4 protein couples the DNA helicase, Cdc45–MCM–GINS, to DNA polymerase α — the GINS subunit of the helicase and the polymerase…”
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    Journal Article
  10. 10

    A Conserved Motif in the C-terminal Tail of DNA Polymerase α Tethers Primase to the Eukaryotic Replisome by Kilkenny, Mairi L., De Piccoli, Giacomo, Perera, Rajika L., Labib, Karim, Pellegrini, Luca

    Published in The Journal of biological chemistry (06-07-2012)
    “…The DNA polymerase α-primase complex forms an essential part of the eukaryotic replisome. The catalytic subunits of primase and pol α synthesize composite…”
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    Journal Article
  11. 11

    Flexible tethering of primase and DNA Pol α in the eukaryotic primosome by Núñez-Ramírez, Rafael, Klinge, Sebastian, Sauguet, Ludovic, Melero, Roberto, Recuero-Checa, María A., Kilkenny, Mairi, Perera, Rajika L., García-Alvarez, Begoña, Hall, Richard J., Nogales, Eva, Pellegrini, Luca, Llorca, Oscar

    Published in Nucleic acids research (01-10-2011)
    “…The Pol α/primase complex or primosome is the primase/polymerase complex that initiates nucleic acid synthesis during eukaryotic replication. Within the…”
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    Journal Article
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    Identification of soluble protein fragments by gene fragmentation and genetic selection by Dyson, Michael R, Perera, Rajika L, Shadbolt, S. Paul, Biderman, Lynn, Bromek, Krystyna, Murzina, Natalia V, McCafferty, John

    Published in Nucleic acids research (01-05-2008)
    “…We describe a new method, which identifies protein fragments for soluble expression in Escherichia coli from a randomly fragmented gene library. Inhibition of…”
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    Journal Article
  14. 14

    Structures of human primase reveal design of nucleotide elongation site and mode of Pol [Alpha] tethering by Kilkenny, Mairi Louise, Longo, Michael Anthony, Perera, Rajika L, Pellegrini, Luca

    “…Initiation of DNA synthesis in genomic duplication depends on primase, the DNA-dependent RNA polymerase that synthesizes de novo the oligonucleotides that…”
    Get full text
    Journal Article
  15. 15

    A Ctf4 trimer couples the CMG helicase to DNA polymerase [alpha] in the eukaryotic replisome by Simon, Aline C, Zhou, Jin C, Perera, Rajika L, van Deursen, Frederick, Evrin, Cecile, Ivanova, Marina E, Kilkenny, Mairi L, Renault, Ludovic, Kjaer, Svend, Matak-Vinkovic, Dijana, Labib, Karim, Costa, Alessandro, Pellegrini, Luca

    Published in Nature (London) (12-06-2014)
    “…Efficient duplication of the genome requires the concerted action of helicase and DNA polymerases at replication forks1 to avoid stalling of the replication…”
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    Journal Article
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    A comprehensive search of functional sequence space using large mammalian display libraries created by gene editing by Parthiban, Kothai, Perera, Rajika L., Sattar, Maheen, Huang, Yanchao, Mayle, Sophie, Masters, Edward, Griffiths, Daniel, Surade, Sachin, Leah, Rachael, Dyson, Michael R., McCafferty, John

    Published in mAbs (04-07-2019)
    “…The construction of large libraries in mammalian cells allows the direct screening of millions of molecular variants for binding properties in a cell type…”
    Get full text
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