Interactive 3D Complements in Proteopedia: Difference between revisions
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Proteopedia encourages authors of any scientific publication to develop an interactive 3D complement in Proteopedia. Members of the Proteopedia team stand ready to assist: {{Template:Contact}}. Here are some examples of author-initiated I3DC: | Proteopedia encourages authors of any scientific publication to develop an interactive 3D complement in Proteopedia. Members of the Proteopedia team stand ready to assist: {{Template:Contact}}. Here are some examples of author-initiated I3DC: | ||
===2015-Present=== | |||
* 2017: An intrinsically disordered linker controlling the formation and the stability of the bacterial flagellar hook. Barker ''et al.'', ''BMC Biology'' <ref>PMID:29078764</ref>, see [[Samatey/5]]. | * 2017: An intrinsically disordered linker controlling the formation and the stability of the bacterial flagellar hook. Barker ''et al.'', ''BMC Biology'' <ref>PMID:29078764</ref>, see [[Samatey/5]]. | ||
* 2016: Complete structure of the bacterial flagellar hook reveals extensive set of stabilizing interactions. Matsunami ''et al.'', ''Nature Communications''<ref>PMID:27811912</ref>, see [[Samatey/4]]. | * 2016: Complete structure of the bacterial flagellar hook reveals extensive set of stabilizing interactions. Matsunami ''et al.'', ''Nature Communications''<ref>PMID:27811912</ref>, see [[Samatey/4]]. | ||
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* 2016: Low Energy Atomic Models Suggesting a Pilus Structure that could Account for Electrical Conductivity of ''Geobacter sulfurreducens'' Pili. Xiao ''et al.''<ref>PMID: 27001169</ref>, ''Scientific Reports'', see [[Ke Xiao/1]]. | * 2016: Low Energy Atomic Models Suggesting a Pilus Structure that could Account for Electrical Conductivity of ''Geobacter sulfurreducens'' Pili. Xiao ''et al.''<ref>PMID: 27001169</ref>, ''Scientific Reports'', see [[Ke Xiao/1]]. | ||
* 2015: Structural basis for metallic-like conductivity in microbial nanowires. Malvankar ''et al.''<ref>PMID: 25736881</ref>, see [[Journal:mBio:1]]. | * 2015: Structural basis for metallic-like conductivity in microbial nanowires. Malvankar ''et al.''<ref>PMID: 25736881</ref>, see [[Journal:mBio:1]]. | ||
===2008-2014=== | |||
* 2013: Inhibition of a type III secretion system by the deletion of a short loop in one of its membrane proteins. V. A. Meshcheryakov, A. Kitao, H. Matsunami and F. A. Samatey. ''Acta Crystallographica D'' D69, 812-820. See [[Samatey/1]]. | * 2013: Inhibition of a type III secretion system by the deletion of a short loop in one of its membrane proteins. V. A. Meshcheryakov, A. Kitao, H. Matsunami and F. A. Samatey. ''Acta Crystallographica D'' D69, 812-820. See [[Samatey/1]]. | ||
* 2011: The publication of "Structural and functional insights into a dodecameric molecular machine – The RuvBL1/RuvBL2 complex" in ''JSB''<ref>PMID: 21933716 </ref> was accompanied by an I3DC at [[Journal:JSB:1]]. | * 2011: The publication of "Structural and functional insights into a dodecameric molecular machine – The RuvBL1/RuvBL2 complex" in ''JSB''<ref>PMID: 21933716 </ref> was accompanied by an I3DC at [[Journal:JSB:1]]. |