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- W2608477002 abstract "Corrigendum15 August 2012free access The tail sheath structure of bacteriophage T4: a molecular machine for infecting bacteria Anastasia A Aksyuk Anastasia A Aksyuk Search for more papers by this author Petr G Leiman Petr G Leiman Search for more papers by this author Lidia P Kurochkina Lidia P Kurochkina Search for more papers by this author Mikhail M Shneider Mikhail M Shneider Search for more papers by this author Victor A Kostyuchenko Victor A Kostyuchenko Search for more papers by this author Vadim V Mesyanzhinov Vadim V Mesyanzhinov Search for more papers by this author Michael G Rossmann Michael G Rossmann Search for more papers by this author Anastasia A Aksyuk Anastasia A Aksyuk Search for more papers by this author Petr G Leiman Petr G Leiman Search for more papers by this author Lidia P Kurochkina Lidia P Kurochkina Search for more papers by this author Mikhail M Shneider Mikhail M Shneider Search for more papers by this author Victor A Kostyuchenko Victor A Kostyuchenko Search for more papers by this author Vadim V Mesyanzhinov Vadim V Mesyanzhinov Search for more papers by this author Michael G Rossmann Michael G Rossmann Search for more papers by this author Author Information Anastasia A Aksyuk, Petr G Leiman, Lidia P Kurochkina, Mikhail M Shneider, Victor A Kostyuchenko, Vadim V Mesyanzhinov and Michael G Rossmann The EMBO Journal (2012)31:3507-3507https://doi.org/10.1038/emboj.2012.223 This article corrects the following: The tail sheath structure of bacteriophage T4: a molecular machine for infecting bacteria19 February 2009 PDFDownload PDF of article text and main figures. ToolsAdd to favoritesDownload CitationsTrack CitationsPermissions ShareFacebookTwitterLinked InMendeleyWechatReddit Figures & Info Correspondence to: [email protected] Correction to: The EMBO Journal (2009) 28, 821–829. doi:10.1038/emboj.2009.36 Since the publication of this article the authors have discovered a small mistake in Figure 4. The last column in Figure 4A should be exchanged with the last column in Figure 4B. Note that the figure legend is still correct. The correct figure is shown here. Figure 1.Connectivity between subunits in the extended and contracted tail sheath. The subunits that form three of the six neighbouring helices (pink, A; blue, B; and green, C) within the sheath are shown as surface representations of (A) the extended and (B) the contracted sheath. The successive hexameric disks are numbered 1, 2, 3, 4 and 5, with the disk being closest to the baseplate numbered 1. On the left is shown a surface representation side view of the tail. Immediately next to it is shown the whole view with a closer view of the three neighbouring helices (in pink, blue and green). In the same column as the closer view of the helical arrangement is shown, the schematic diagram of the arrangement of the three outer domains using the same colour scheme with each gp18 molecule is being represented by a cross. Right next to this is shown the arrangement of the inner helices consisting only of domains IV. This domain retains the connectivity between neighbouring subunits within each helix in both (A) the extended and (B) the contracted sheath. At the right of each panel is shown the top view of one disk of the tail sheath in the (A) extended and (B) contracted conformations. The three outer domains that correspond to the atomic structure are shown in ribbon representation. Domain IV, whose structure has not yet been determined, is shown as density segmented from the cryo-EM map. Download figure Download PowerPoint The authors apologise for any inconvenience caused. Next ArticlePrevious Article Read MoreAbout the coverClose modalView large imageVolume 31,Issue 16,August 15, 2012Wintering Monarch butterflies ( Danaus plexippus), Santa Cruz, California. Masses of migrants gather in eucalyptus groves to overwinter before returning north; their numbers have decreased as a consequence of herbicides that kill field-side milkweed plants, their favoured food. The photographer, Matthew Scott, is a developmental biologist at Stanford University School of Medicine ( http://med.stanford.edu/labs/matthew_scott/). Volume 31Issue 1615 August 2012In this issue FiguresRelatedDetailsLoading ..." @default.
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- W2608477002 title "The tail sheath structure of bacteriophage T4: a molecular machine for infecting bacteria" @default.
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