Published in Structure on September 03, 2013
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The human nuclear pore complex as revealed by cryo-electron tomography. Structure (2012) 1.39
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Structure of hibernating ribosomes studied by cryoelectron tomography in vitro and in situ. J Cell Biol (2010) 1.19
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Visualizing cellular processes at the molecular level by cryo-electron tomography. J Cell Sci (2010) 1.12
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Structure and 3D arrangement of endoplasmic reticulum membrane-associated ribosomes. Structure (2012) 0.90
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New insights into the structural organization of eukaryotic and prokaryotic cytoskeletons using cryo-electron tomography. Exp Cell Res (2004) 0.84
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Functional and structural characterization of the Methanosarcina mazei proteasome and PAN complexes. J Struct Biol (2006) 0.81
Structural and physiological phenotypes of disease-linked lamin mutations in C. elegans. J Struct Biol (2011) 0.81
Cryoelectron tomography of eukaryotic cells. Methods Enzymol (2010) 0.81
A laminopathic mutation disrupting lamin filament assembly causes disease-like phenotypes in Caenorhabditis elegans. Mol Biol Cell (2011) 0.81
Filaments assembly of ectopically expressed Caenorhabditis elegans lamin within Xenopus oocytes. J Struct Biol (2011) 0.79
Photosynthetic system in Blastochloris viridis revisited. Biochemistry (2009) 0.78
Perspective on the metazoan nuclear pore complex. Nucleus (2011) 0.78
Experimental analysis of co-evolution within protein complexes: the yeast exosome as a model. Proteins (2013) 0.77
Structural and functional insights into nucleocytoplasmic transport. Histol Histopathol (2008) 0.77
Unravelling the lamina network. Nat Rev Mol Cell Biol (2012) 0.75
Assembly and breakdown of microtubules within the midbody. Commun Integr Biol (2011) 0.75
Reconstructing adhesion structures in tissues by cryo-electron tomography of vitrified frozen sections. J Struct Biol (2011) 0.75
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The assembly of C. elegans lamins into macroscopic fibers. J Mech Behav Biomed Mater (2016) 0.75
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