000328901 001__ 328901 000328901 005__ 20250717103355.0 000328901 0247_ $$2doi$$a10.1038/nmeth.4335 000328901 0247_ $$2ISSN$$a1548-7091 000328901 0247_ $$2ISSN$$a1548-7105 000328901 0247_ $$2pmid$$apmid:28628129 000328901 0247_ $$2WOS$$aWOS:000406493800020 000328901 0247_ $$2altmetric$$aaltmetric:21175029 000328901 0247_ $$2openalex$$aopenalex:W2626553654 000328901 037__ $$aPUBDB-2017-05548 000328901 041__ $$aEnglish 000328901 082__ $$a570 000328901 1001_ $$0P:(DE-H253)PIP1018353$$aRoedig, Philip$$b0$$eFirst author 000328901 245__ $$aHigh-speed fixed-target serial virus crystallography 000328901 260__ $$aLondon [u.a.] Nature Publishing Group$$bNature Publishing Group$$c2017 000328901 3367_ $$2DRIVER$$aarticle 000328901 3367_ $$2DataCite$$aOutput Types/Journal article 000328901 3367_ $$0PUB:(DE-HGF)16$$2PUB:(DE-HGF)$$aJournal Article$$bjournal$$mjournal$$s1548611519_11611 000328901 3367_ $$2BibTeX$$aARTICLE 000328901 3367_ $$2ORCID$$aJOURNAL_ARTICLE 000328901 3367_ $$00$$2EndNote$$aJournal Article 000328901 500__ $$a(c) Nature America; Post referee fulltext in progress 2; Embargo 6 months from publication 000328901 520__ $$aWe report a method for serial X-ray crystallography at X-ray free-electron lasers (XFELs), which allows for full use of the current 120-Hz repetition rate of the Linear Coherent Light Source (LCLS). Using a micropatterned silicon chip in combination with the high-speed Roadrunner goniometer for sample delivery, we were able to determine the crystal structures of the picornavirus bovine enterovirus 2 (BEV2) and the cytoplasmic polyhedrosis virus type 18 polyhedrin, with total data collection times of less than 14 and 10 min, respectively. Our method requires only micrograms of sample and should therefore broaden the applicability of serial femtosecond crystallography to challenging projects for which only limited sample amounts are available. By synchronizing the sample exchange to the XFEL repetition rate, our methodallows for most efficient use of the limited beam time available at XFELs and should enable a substantial increase in sample throughput at these facilities. 000328901 536__ $$0G:(DE-HGF)POF3-6215$$a6215 - Soft Matter, Health and Life Sciences (POF3-621)$$cPOF3-621$$fPOF III$$x0 000328901 536__ $$0G:(DE-HGF)2015_IFV-VH-VI-403$$aVH-VI-403 - In-Situ Nano-Imaging of Biological and Chemical Processes (2015_IFV-VH-VI-403)$$c2015_IFV-VH-VI-403$$x1 000328901 536__ $$0G:(EU-Grant)654220$$aEUCALL - European Cluster of Advanced Laser Light Sources (654220)$$c654220$$fH2020-INFRADEV-1-2014-1$$x2 000328901 588__ $$aDataset connected to CrossRef 000328901 693__ $$0EXP:(DE-MLZ)External-20140101$$5EXP:(DE-MLZ)External-20140101$$eMeasurement at external facility$$x0 000328901 7001_ $$0P:(DE-HGF)0$$aGinn, Helen$$b1$$eFirst author 000328901 7001_ $$0P:(DE-H253)PIP1007563$$aPakendorf, Tim$$b2$$udesy 000328901 7001_ $$aSutton, Geoff$$b3 000328901 7001_ $$aHarlos, Karl$$b4 000328901 7001_ $$aWalter, Thomas S$$b5 000328901 7001_ $$0P:(DE-H253)PIP1016998$$aMeyer, Jan$$b6$$udesy 000328901 7001_ $$0P:(DE-H253)PIP1011948$$aFischer, Pontus$$b7$$udesy 000328901 7001_ $$0P:(DE-H253)PIP1019287$$aDuman, Ramona$$b8 000328901 7001_ $$0P:(DE-H253)PIP1016081$$aVartiainen, Ismo$$b9 000328901 7001_ $$0P:(DE-H253)PIP1001724$$aReime, Bernd$$b10$$udesy 000328901 7001_ $$0P:(DE-H253)PIP1017872$$aWarmer, Martin$$b11$$udesy 000328901 7001_ $$aBrewster, Aaron S$$b12 000328901 7001_ $$0P:(DE-HGF)0$$aYoung, Iris D$$b13 000328901 7001_ $$aMichels-Clark, Tara$$b14 000328901 7001_ $$aSauter, Nicholas K$$b15 000328901 7001_ $$aKotecha, Abhay$$b16 000328901 7001_ $$aKelly, James$$b17 000328901 7001_ $$aRowlands, David J$$b18 000328901 7001_ $$aSikorsky, Marcin$$b19 000328901 7001_ $$aNelson, Silke$$b20 000328901 7001_ $$aDamiani, Daniel S$$b21 000328901 7001_ $$0P:(DE-HGF)0$$aAlonso-Mori, Roberto$$b22 000328901 7001_ $$aRen, Jingshan$$b23 000328901 7001_ $$aFry, Elizabeth E$$b24 000328901 7001_ $$0P:(DE-H253)PIP1013976$$aDavid, Christian$$b25 000328901 7001_ $$0P:(DE-HGF)0$$aStuart, David I m$$b26 000328901 7001_ $$0P:(DE-H253)PIP1019282$$aWagner, Armin$$b27 000328901 7001_ $$0P:(DE-H253)PIP1006208$$aMeents, Alke$$b28$$eCorresponding author 000328901 773__ $$0PERI:(DE-600)2163081-1$$a10.1038/nmeth.4335$$p805-810$$tNature methods$$v14$$x1548-7091$$y2017 000328901 8564_ $$uhttps://www.nature.com/nmeth/journal/vaop/ncurrent/full/nmeth.4335.html 000328901 8564_ $$uhttps://bib-pubdb1.desy.de/record/328901/files/nmeth.4335.pdf$$yRestricted 000328901 8564_ $$uhttps://bib-pubdb1.desy.de/record/328901/files/nmeth.4335.gif?subformat=icon$$xicon$$yRestricted 000328901 8564_ $$uhttps://bib-pubdb1.desy.de/record/328901/files/nmeth.4335.jpg?subformat=icon-1440$$xicon-1440$$yRestricted 000328901 8564_ $$uhttps://bib-pubdb1.desy.de/record/328901/files/nmeth.4335.jpg?subformat=icon-180$$xicon-180$$yRestricted 000328901 8564_ $$uhttps://bib-pubdb1.desy.de/record/328901/files/nmeth.4335.jpg?subformat=icon-640$$xicon-640$$yRestricted 000328901 8564_ $$uhttps://bib-pubdb1.desy.de/record/328901/files/nmeth.4335.pdf?subformat=pdfa$$xpdfa$$yRestricted 000328901 8767_ $$82676059481$$92017-05-30$$d2017-09-11$$eColour charges$$jZahlung erfolgt$$zMS 000328901 909CO $$ooai:bib-pubdb1.desy.de:328901$$popenCost$$pec_fundedresources$$pOpenAPC$$pVDB$$popenaire 000328901 915__ $$0StatID:(DE-HGF)0200$$2StatID$$aDBCoverage$$bSCOPUS 000328901 915__ $$0StatID:(DE-HGF)0300$$2StatID$$aDBCoverage$$bMedline 000328901 915__ $$0StatID:(DE-HGF)1050$$2StatID$$aDBCoverage$$bBIOSIS Previews 000328901 915__ $$0StatID:(DE-HGF)0600$$2StatID$$aDBCoverage$$bEbsco Academic Search 000328901 915__ $$0StatID:(DE-HGF)0100$$2StatID$$aJCR$$bNAT METHODS : 2015 000328901 915__ $$0StatID:(DE-HGF)1030$$2StatID$$aDBCoverage$$bCurrent Contents - 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