Reactome: A Curated Pathway Database
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Query author contributions in Reactome

Reactome depends on collaboration between our curation team and outside experts to assemble and peer-review its pathway modules. The integration of ORCID within Reactome enables us to meet a key challenge with authoring, curating and reviewing biological information by incentivizing and crediting the external experts that contribute their expertise and time to the Reactome curation process. More information is available at ORCID and Reactome.

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Details on Person Friedberg, Errol C

Class:IdPerson:5653628
_displayNameFriedberg, Errol C
_timestamp2014-12-01 17:00:03
created[InstanceEdit:5653630] Orlic-Milacic, Marija, 2014-12-01
firstnameErrol C
initialEC
surnameFriedberg
(author)[LiteratureReference:5653638] Two-polymerase mechanisms dictate error-free and error-prone translesion DNA synthesis in mammals
[LiteratureReference:5653644] Trading places: how do DNA polymerases switch during translesion DNA synthesis?
[LiteratureReference:5655894] Quantitative analysis of translesion DNA synthesis across a benzo[a]pyrene-guanine adduct in mammalian cells: the role of DNA polymerase kappa
[LiteratureReference:5655901] Human DNA polymerase kappa bypasses and extends beyond thymine glycols during translesion synthesis in vitro, preferentially incorporating correct nucleotides
[LiteratureReference:5656098] Comparative analysis of in vivo interactions between Rev1 protein and other Y-family DNA polymerases in animals and yeasts
[LiteratureReference:5656109] Mouse Rev1 protein interacts with multiple DNA polymerases involved in translesion DNA synthesis
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No pathways have been reviewed or authored by Friedberg, Errol C (5653628)