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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 Cusack, S

Class:IdPerson:192773
_displayNameCusack, S
_timestamp2008-11-06 23:26:00
created[InstanceEdit:192697] Gillespie, ME, 2007-02-07 04:51:41
firstnameStephen
initialS
modified[InstanceEdit:379999] D'Eustachio, P, 2008-11-06 23:24:17
surnameCusack
(author)[LiteratureReference:192878] Structure of influenza virus RNP. I. Influenza virus nucleoprotein melts secondary structure in panhandle RNA and exposes the bases to the solvent.
[LiteratureReference:195610] A small percentage of influenza virus M1 protein contains zinc but zinc does not influence in vitro M1-RNA interaction
[LiteratureReference:380036] Structure, function and evolution of seryl-tRNA synthetases: implications for the evolution of aminoacyl-tRNA synthetases and the genetic code
[LiteratureReference:927850] The structural basis for the interaction between nonsense-mediated mRNA decay factors UPF2 and UPF3
[LiteratureReference:927859] Unusual bipartite mode of interaction between the nonsense-mediated decay factors, UPF1 and UPF2
[LiteratureReference:5605290] The multiple Tudor domain-containing protein TDRD1 is a molecular scaffold for mouse Piwi proteins and piRNA biogenesis factors
[LiteratureReference:6814918] CBC-ARS2 stimulates 3'-end maturation of multiple RNA families and favors cap-proximal processing
[LiteratureReference:9717462] Molecular mechanism of influenza A NS1-mediated TRIM25 recognition and inhibition
[LiteratureReference:9717653] Kinetic discrimination of self/non-self RNA by the ATPase activity of RIG-I and MDA5
[LiteratureReference:9770960] Structural analysis of the KANSL1/WDR5/KANSL2 complex reveals that WDR5 is required for efficient assembly and chromatin targeting of the NSL complex
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No pathways have been reviewed or authored by Cusack, S (192773)