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Journal Article (36)
21.
Journal Article
Crystal Structure of a 9-Subunit Archaeal Exosome in Pre-Catalytic States of the Phosphorolytic Reaction. ARCHAEA-AN INTERNATIONAL MICROBIOLOGICAL JOURNAL, 721869 (2012)
22.
Journal Article
83 [2012] (2), pp. S12 - S22 (2011)
Architecture and function of IFT complex proteins in ciliogenesis. Differentiation 23.
Journal Article
286 (30), pp. 26344 - 26352 (2011)
Biochemical Mapping of Interactions within the Intraflagellar Transport (IFT) B Core Complex IFT52 BINDS DIRECTLY TO FOUR OTHER IFT-B SUBUNITS. Journal of Biological Chemistry 24.
Journal Article
30 (10), pp. 1907 - 1918 (2011)
Crystal structure of the intraflagellar transport complex 25/27. EMBO Journal 25.
Journal Article
8 (3), pp. 398 - 403 (2011)
Mechanisms of RNA recruitment by the exosome. RNA Biology 26.
Journal Article
11 (12), pp. 936 - 942 (2010)
RNA channelling by the eukaryotic exosome. EMBO Reports 27.
Journal Article
139 (3), pp. 547 - 559 (2009)
The Yeast Exosome Functions as a Macromolecular Cage to Channel RNA Substrates for Degradation. Cell 28.
Journal Article
276 (Suppl. 1), pp. 37 - 38 (2009)
Molecular mechanisms of RNA degradation by the exosome. FEBS Journal 29.
Journal Article
18 (6), pp. 709 - 713 (2008)
Structural organization of the RNA-degrading exosome. Current Opinion in Structural Biology 30.
Journal Article
29 (6), pp. 717 - 728 (2008)
Structure of the active subunit of the yeast exosome core, Rrp44: Diverse modes of substrate recruitment in the RNase II nuclease family. MOLECULAR CELL 31.
Journal Article
Structural insights into mRNA degradation. Abstracts of the 32nd FEBS Congress, C5-L1, p. 61 - 61 (2007)
32.
Journal Article
14 (1), pp. 15 - 22 (2007)
A single subunit, Dis3, is essentially responsible for yeast exosome core activity. Nature Structural & Molecular Biology 33.
Journal Article
8, pp. 470 - 476 (2007)
RNA channelling by the archaeal exosome. EMBO Reports 34.
Journal Article
8 (1), pp. 63 - 69 (2007)
Structural and biochemical characterization of the yeast exosome component Rrp40. EMBO Reports 35.
Journal Article
126 (4), pp. 713 - 725 (2006)
The crystal structure of the exon junction complex reveals how it maintains a stable grip on mRNA. Cell 36.
Journal Article
125 (4), pp. 651 - 654 (2006)
The exosome and the proteasome: Nano-compartments for degradation. Cell Book Chapter (3)
37.
Book Chapter
Complex Reconstitution from Individual Protein Modules. In: Advanced Technologies for Protein Complex Production and Characterization, pp. 305 - 314 (Ed. Vega, M. C.). Springer, Cham (2016)
38.
Book Chapter
Recombinant Reconstitution and Purification of the IFT-B Core Complex from Chlamydomonas reinhardtii. In: Cilia, pp. 69 - 82 (Eds. Satir, P.; Christensen, S.). HUMANA Press, New York (2016)
39.
Book Chapter
Expression, reconstitution, and structure of an archaeal RNA degrading exosome. In: RNA Turnover in Prokaryotes, Archaea and Organelles, pp. 417 - 435. Elsevier Academic Press Inc., San Diego (2008)
Meeting Abstract (1)
40.
Meeting Abstract
27, E104. ASCB 2016 Meeting, Microsymposium 12, San Francisco, December 03, 2016 - December 07, 2016. American Society for Cell Biology (2016)
Growth factor signaling regulation of a Rab-effector switch required for ciliogenesis initiation. In Molecular Biology of the Cell,